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    Detection of Panic Attacks Using Convolutional Neural Networks on ECG Data

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    Panic attacks are a prevalent psychiatric disease characterized by abrupt and acute episodes of panic, accompanied by specific physical symptoms such as heart palpitations and dyspnea. The prompt and precise identification of these episodes is crucial for enhancing patients' quality of life. This study proposes an artificial intelligence-based classification method based on electrocardiography (ECG) signals to detect panic attacks. Raw ECG signals are visualized by obtaining two-dimensional scaled representations (scalograms) using continuous wavelet transform (CWT). Then, these images are classified with deep learning-based convolutional neural network (CNN) models. In the study, scalogram images were obtained using 5-second ECG signal segments. Then, they were classified with various CNN models, and their performances were evaluated. The findings indicated that the ResNet50 model exhibited the superior classification performance, achieving an accuracy of 99.83% and an AUC value of 100%. Consequently, it demonstrates that the utilization of time-frequency-based information processed using deep learning models yields great accuracy in detecting panic attacks

    Μtristan- and Lhc-/Tevatron- Antimuon-Hadron Colliders

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    Recently, the construction of mu +e- and mu+mu+ colliders, mu TRISTAN, at KEK has been proposed. We argue that the construction of a similar mu+ ring tangential to LHC/Tevatron/FCC/SppC will give an opportunity to realize mu +p and mu +A collisions at multi-TeV scale center-of-mass energies. In this paper, the main parameters of proposed colliders have been studied. It is shown that sufficiently high luminosities can be achieved for all proposals under consideration: L exceeds 1033 cm-2 s-1 for mu +p colliders and 1030 cm-2 s-1 for mu +A colliders. Certainly, proposed colliders will provide huge potential for both SM (especially QCD basics) and BSM physics searches.Scientific and Technological Research Council of Turkiye (TUBITAK)Open access funding provided by the Scientific and Technological Research Council of Turkiye (TUBITAK)

    Theorizing Psychological Operations Through Norm Entrepreneurship: The Cases of Radio Free Europe and Radio Liberty

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    This research examines the role of psychological operations as strategic instruments for normative change, with a focus on the Cold War broadcasts of Radio Free Europe and Radio Liberty. Using a constructivist framework, it identifies three key components shared by psychological operations and the norm change process: the agency of norm entrepreneurs, the use of framing techniques, and the intended normative influence. Through an in-depth analysis of archival documents, this research explores how the radio broadcasts reshaped public perceptions, countered Soviet narratives and promoted democratic norms across the Iron Curtain. The core findings reveal that psychological operations extend beyond simple information dissemination, operating as a dynamic and strategic approach for promoting norms. This approach relies on the employment of tailored framing and coordinated involvement of state and non-state actors, directed by intelligence agencies to craft and convey messages that foster desired normative shifts. These actors, identified here as norm entrepreneurs, bear responsibility for the planning and execution of psychological operations utilizing strategic communication skills to promote norms that resonate effectively with their target audiences

    Crash Performance of Additively Manufactured Tapered Tube Crash Boxes: Influence of Material and Geometric Parameters

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    Crash boxes play a crucial role in mitigating force during vehicle collisions by absorbing impact energy. Additive manufacturing (AM), particularly Fused Deposition Modeling (FDM), has emerged as a promising method for their fabrication due to its design flexibility and continuous advancements in material development. This study investigates the crash performance of tapered crash box configurations, each manufactured using two FDM materials: Carbon Fiber-Reinforced Polylactic Acid (PLA-CF) and Polylactic Acid Plus (PLA+). The specimens vary in wall thickness and taper angles to evaluate the influence of geometric and material parameters on crashworthiness. The results demonstrated that both specific energy absorption ((Formula presented.)) and crush force efficiency ((Formula presented.)) increase with wall thickness and taper angle, with PLA-CF consistently outperforming PLA+ in both metrics. ANOVA results showed that wall thickness is the most influential factor in crashworthiness, accounting for 73.18% of (Formula presented.) variation and 58.19% of (Formula presented.) variation. Taper angle contributed 13.49% to (Formula presented.) and 31.49% to (Formula presented.), while material type had smaller but significant effects, contributing 0.66% to (Formula presented.) and 0.11% to (Formula presented.). Regression models were developed based on the experimental data to predict (Formula presented.) and (Formula presented.) with a maximum absolute percentage error of 4.97%. These models guided the design of new configurations, with the optimal case achieving an (Formula presented.) of 32.086 ± 0.190 kJ/kg and a (Formula presented.) of 0.745 ± 0.034. The findings confirm the potential of PLA-CF in enhancing the energy-absorption capability of crash boxes, particularly in tapered designs. © 2025 by the authors

    Design Optimization of an Aircraft Composite Panel Against Bird Strike

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    The threat of bird strike in aviation has become a significant problem. Bird strikes can cause serious costs and loss of life. In order for aircraft structures to survive bird strike accidents without any damage, tests and finite element (FE) analyses are carried out in accordance with the relevant regulations. In this study, design optimization of a composite panel of a national combat aircraft structure is carried out against bird strike. First, an existing study from the literature is replicated as a preliminary step to ensure our FE modeling capability. Next, an FE model is generated to simulate the bird strike to a composite panel of a national combat aircraft structure. Then, generated FE model is used to determine the optimum design configuration of the composite panel. Finally, the optimum design configuration is manufactured, and bird strike tests are performed at a gas gun facility using gelatin artificial birds. It is observed that the designed composite panel shows good collision performance and the FE model results is consistent with the bird strike test results.This study was supported by the Scientific and Technological Research Council of Turkiye (TUBITAK) project no. 20AG027 under program no. 20AG001. The authors also acknowledge the support provided by TUBITAK under program 2224-A. The authors thank Turkish Aerospace Industries for providing the composite panels used in the tests. The authors also thank Roketsan Missile Industries for sharing the gas gun test system facility.Scientific and Technological Research Council of Turkiye (TUBITAK) [20AG027, 20AG001]; TUBITAK [2224-A

    Waitlist Engineering in Discrete Object Allocations With Outside Option

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    This study pursues how waitlists should be designed to achieve desirable outcomes in object allocation models with outside option. We adapt the usual stability notion to our setting and call it "sure stability." Our first mechanism-Deferred Acceptance with Straightforward Waitlists (DSW)-is surely stable, and it dominates other surely stable mechanisms unless waitlists are capped, otherwise, it is not even constrained efficient. Given this inefficiency of DSW, we propose Deferred Acceptance with Augmented Waitlists (DAW) mechanism. It is surely stable and improves DSW. Sure stability is incompatible with strategy-proofness, hence both mechanisms are manipulable. We also show that increasing the waitlist capacities is always at least weakly welfare-improving under each of them

    Search for the Jet-Induced Diffusion Wake in the Quark-Gluon Plasma via Measurements of Jet-Track Correlations in Photon-Jet Events in Pb Plus Pb Collisions at √Snn=5.02 TeV With the Atlas Detector

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    Schultz-Coulon, Hans-Christian/0000-0002-0860-7240; Grosse-Knetter, Jorn/0000-0003-3085-7067; Vigl, Matthias/0000-0003-2281-3822; Ricci, Ester/0000-0002-4222-9976; Thompson, Emily Anne/0000-0001-7050-8203; Chen, Hucheng/0000-0002-9936-0115; Montejo Berlingen, Javier/0000-0001-9213-904X; Przybycien, Mariusz/0000-0002-9235-2649; Unal, Guillaume/0000-0001-8130-7423; Ballabene, Eric/0000-0001-9700-2587; Castro, Nuno/0000-0001-8491-4376; Hagan, Alina Isobel/0000-0002-2079-4739; Lanza, Agostino/0000-0003-4980-6032; Roy, Avik/0000-0002-0116-1012; Mete, Alaettin Serhan/0000-0002-5508-530X; Malito, Davide/0000-0002-3996-4662; Jackson, Paul/0000-0002-0847-402X; Gwilliam, Carl/0000-0002-9401-5304; Cunha Sargedas Sousa, Mario Jose/0000-0001-7991-593X; Romano, Marino/0000-0002-6609-7250; Willocq, Stephane/0000-0002-4120-1453; Uysal, Zekeriya/0000-0002-7110-8065; Andrean, Stefio Yosse/0000-0002-9766-2670; Bogavac, Danijela/0000-0003-2138-9062; Yang, Tianyi/0000-0002-4996-1924; Rebuzzi, Daniela Marcella/0000-0003-4461-3880; Doyle, Anthony/0000-0001-6322-6195; Buckley, Andy/0000-0001-8355-9237; Duda, Dominik/0000-0002-5916-3467; Feligioni, Lorenzo/0000-0002-1403-0951; Kodys, Peter/0000-0002-8644-2349; Faraj, Mohammed/0000-0001-9442-7598; Gonzalez Suarez, Rebeca/0000-0002-6126-7230; Panduro Vazquez, Jose Guillermo/0000-0003-2605-8940; Ali, Shahzad/0000-0001-5216-3133; Mcpherson, Robert/0000-0001-9211-7019; Liu, Mingyi/0000-0002-0236-5404; Frattari, Guglielmo/0000-0002-7829-6564; Dao, Valerio/0000-0003-1645-8393; Garcia, Carmen/0000-0003-1625-7452; Keeler, Richard/0000-0002-0510-4189; Zhang, Yulei/0000-0001-6274-7714; Elsing, Markus/0000-0002-1213-0545; Fanti, Marcello/0000-0002-8773-145X; Mitsou, Vasiliki A./0000-0002-1533-8886; Sopczak, Andre/0000-0001-6981-0544; Vittori, Camilla/0000-0001-9156-970X; Komarek, Tomas/0000-0002-3047-3146; Moreno Martinez, Carlos/0000-0002-5719-7655; Saito, Masahiko/0000-0001-5564-0935; Moser, Brian/0000-0001-6750-5060; Lewicki, Maciej Piotr/0000-0002-8972-3066; Abramowicz, Halina/0000-0001-5329-6640; Li, Zhelun/0000-0001-7096-2158; Ozturk, Nurcan/0000-0003-1125-6784; Martin-Haugh, Stewart/0000-0001-9457-1928; Beretta, Matteo Mario/0000-0002-7026-8171; Marjanovic, Marija/0000-0002-4468-0154; Bortoletto, Daniela/0000-0002-1287-4712; Golling, Tobias/0000-0001-8535-6687; Tishelman-Charny, Abraham/0000-0002-7332-5098; Sinha, Sukanya/0000-0002-2438-3785; Pater, Joleen/0000-0002-0598-5035; Salvador Salas, Adrian/0000-0001-5041-5659; Navarro Gonzalez, Josep/0000-0002-4172-7965; Bouhova-Thacker, Evelina/0000-0002-5103-1558; Cremonini, Davide/0000-0003-1687-3079; Pascual Dominguez, Luis/0000-0003-4701-9481; Ryzhov, Andrey/0000-0002-0623-7426; Liu, Bingxuan/0000-0002-0721-8331; Introzzi, Gianluca/0000-0002-1314-2580; Filthaut, Frank/0000-0003-3338-2247; Varvell, Kevin/0000-0003-1017-1295; Nisati, Aleandro/0000-0002-5080-2293; Chevalier, Laurent/0000-0003-3762-7264; Mlinarevic, Marin/0000-0003-3587-646X; Shapiro, Marjorie/0000-0001-8540-9654; Wendland, Bjorn/0000-0003-1623-3899; Vu, Ngoc Khanh/0000-0002-6251-1178; Worm, Steven/0000-0002-3865-4996; Kirk, Julie/0000-0001-8096-7577; Morii, Masahiro/0000-0001-9324-057X; Jones, Roger/0000-0002-6427-3513; Zhang, Rui/0000-0002-8265-474X; Onyisi, Peter/0000-0003-4201-7997; Tanaka, Reisaburo/0000-0002-9929-1797; Nikiforou, Nikiforos/0000-0003-1267-7740; Mueller, James/0000-0001-5099-4718; Raine, John/0000-0002-5987-4648; Alderweireldt, Sara/0000-0002-8224-7036; Azuelos, Georges/0000-0003-4241-022X; Rompotis, Nikolaos/0000-0003-2577-1875; Costanzo, Davide/0000-0003-4920-6264; Heinrich, Lukas/0000-0002-4048-7584; Mokgatitswane, Gaogalalwe/0000-0001-9878-4373; Bellos, Panagiotis/0000-0003-2049-9622; Boudet, Leo/0000-0002-3613-3142; Koffas, Thomas/0000-0001-9612-4988; Valero, Alberto/0000-0002-9776-5880; Merlassino, Claudia/0000-0002-5445-5938; Jones, Eleanor/0000-0001-6289-2292; Goossens, Luc/0000-0002-2536-4498; Maeda, Junpei/0000-0002-9084-3305; Zhang, Shuzhou/0000-0001-9039-9809; Cheong, Sanha/0000-0002-2797-6383; Ahmadov, Faig/0000-0003-3644-540X; Bhatta, Somadutta/0000-0002-9045-3278; Pettee, Mariel/0000-0001-9208-3218; Cranmer, Kyle/0000-0002-5769-7094; Dell'Asta, Lidia/0000-0002-9601-4225; Volkotrub, Yuriy/0000-0002-3114-3798; Terzo, Stefano/0000-0003-3388-3906; Mckee, Shawn/0000-0002-4551-4502; Aboulhorma, Asmaa/0000-0002-9987-2292; Stark, Giordon/0000-0001-6616-3433; Das, Sruthy Jyothi/0000-0003-2693-3389; Camarda, Stefano/0000-0003-0479-7689; Ali, Babar/0000-0001-8653-5556; Todome, Kazuki/0000-0003-2445-1132; Bevan, Adrian/0000-0002-4105-9629; Kretzschmar, Jan/0000-0002-8515-1355; Thomson, Evelyn/0000-0001-6031-2768; Du, Dongshuo/0000-0002-6758-0113; Konstantinidis, Nikolaos/0000-0002-4140-6360; Aad, Georges/0000-0002-6665-4934; Winter, Benedict Tobias/0000-0001-9606-7688; Maniatis, Ioannis/0000-0002-4362-0088; Olivares, Sebastian/0000-0003-4616-6973; Smirnova, Oxana/0000-0003-2517-531X; Lloyd, Stephen/0000-0002-5073-2264; Stanislaus, Beojan/0000-0001-9007-7658; Stevenson, Thomas/0000-0003-2399-8945; Borissov, Guennadi/0000-0002-4226-9521; Bhattacharya, Deb Sankar/0000-0003-3837-4166; Orellana, Gonzalo Enrique/0000-0002-4753-4048; Longarini, Iacopo/0000-0002-0352-2854; Zerradi, Soufiane/0000-0001-9101-3226; Lari, Tommaso/0000-0002-1388-869X; Geanta, Andrei-Alexandru/0000-0003-2781-2933; Vincter, Manuella/0000-0002-5338-8972; Hoya, Joaquin/0000-0002-7562-0234; Chwastowski, Janusz/0000-0002-6190-8376; Abdelhameed, Sara/0000-0002-0287-5869; Kartvelishvili, Vakhtang/0000-0002-1957-3787; White, Martin/0000-0001-5474-4580; Onofre, Antonio/0000-0003-3471-2703; Bona, Marcella/0000-0002-9660-580X; Fox, Harald/0000-0003-3089-6090; Pizzini, Alessio/0000-0001-8891-1842; Yabsley, Bruce/0000-0002-2680-0474; Angerami, Aaron/0000-0001-7834-8750; Barr, Alan/0000-0002-3533-3740; Haley, Joseph/0000-0002-6938-7405; Grivaz, Jean-Francois/0000-0003-4793-7995; Martin Dit Latour, Bertrand/0000-0003-3420-2105; Barakat, Marawan/0000-0001-5740-1866; Montella, Alessandro/0000-0002-5578-6333; Nikolopoulos, Konstantinos/0000-0002-3048-489X; Zhang, Zhiqing/0000-0002-7853-9079; Pollard, Christopher/0000-0002-3690-3960; Kumar, Mukesh/0000-0003-3681-1588; Dong, Binbin/0000-0002-6075-0191; El Moussaouy, Ali/0000-0002-9669-5374; Varni, Carlo/0000-0001-6733-4310; Burghgrave, Blake/0000-0001-5686-0948; Cristoforetti, Marco/0000-0002-0127-1342; Abicht, Nils Julius/0000-0001-5763-2760; Miu, Ovidiu/0000-0002-0287-8293; Longo, Riccardo/0000-0003-3984-6452; Affolder, Anthony/0000-0002-9058-7217; Mildner, Hannes/0000-0002-0384-6955; Dell'Acqua, Andrea/0000-0003-2453-7745; Ripellino, Giulia/0000-0002-4053-5144; Warburton, Andreas/0000-0002-2298-7315; Doglioni, Caterina/0000-0002-1509-0390; Bella, Gideon/0000-0002-4009-0990; Santra, Arka/0000-0003-4644-2579; Islam, Wasikul/0000-0002-5624-5934; Beacham, James/0000-0003-3623-3335; Parajuli, Santosh/0000-0003-1499-3990; Chan, Jay/0000-0001-7069-0295; Dam, Mogens/0000-0001-6278-9674; Hoppesch, Matthew/0000-0002-7773-3654; Javurkova, Martina/0000-0001-8798-808X; Sedlaczek, Kevin/0000-0003-2052-2386; Barton, Adam/0000-0001-9696-9497; Carlson, Benjamin/0000-0002-7550-7821; Abbott, Braden/0000-0002-5888-2734; Gregor, Ingrid Maria/0000-0002-5976-7818; Ould-Saada, Farid/0000-0002-9404-835X; Rocchi, Alessandro/0000-0002-3125-8333; Lebedev, Alexandre/0000-0002-9566-1850; Pereira Sanchez, Laura/0000-0001-7913-3313; Alves, Fabio Lucio/0000-0002-1626-6255; Da Fonseca Pinto, Joao Victor/0000-0003-1746-1914; Beau, Tristan/0000-0002-2022-2140; Iuppa, Roberto/0000-0001-5038-2762; Ciesla, Krzysztof/0000-0003-2751-3474; Benjamin, Trocme/0000-0001-9500-2487; Ghosh, Aishik/0000-0003-0819-1553; Cheu, Elliott/0000-0002-2562-9724; Panizzo, Giancarlo/0000-0002-0352-4833; Umaka, Ejiro/0000-0001-7725-8227; Lazzaroni, Massimo/0000-0002-4094-1273; Tariq, Khuram/0000-0002-0584-8700; De La Torre Perez, Hector/0000-0002-4516-5269; Vasile, Matei-Eugen/0000-0001-8415-0759; Todorova, Sarka/0000-0003-2433-231X; Stockton, Mark/0000-0001-9679-0323; Hank, Michael/0000-0002-4731-6120; Guerrero Rojas, Jesus/0000-0001-8487-3594; Duperrin, Arnaud/0000-0002-5789-9825; Connell, Simon/0000-0001-6000-7245; Al Khoury, Konie/0000-0002-0547-8199; Li, Liang/0000-0001-6411-6107; Goussiou, Anna/0000-0001-6211-7122; Sadrozinski, Hartmut/0000-0003-0019-5410; Sandesara, Jay/0000-0002-6016-8011; Klein, Matthew Henry/0000-0002-9999-2534; Vecchio, Valentina/0000-0002-1351-6757; Ran, Kunlin/0000-0003-3119-9924; Kvam, Audrey/0000-0001-7243-0227; Bouquet, Romain/0000-0001-9683-7101; Schopf, Elisabeth/0000-0002-9340-2214; Cindro, Vladimir/0000-0002-2037-7185; Sampsonidou, Despoina/0000-0003-0384-7672; Wei, Yingjie/0000-0001-9725-2316; Ernani Martins Neto, Daniel/0000-0003-2793-5335; Bhattarai, Prajita/0000-0001-9977-0416; Wang, Zirui/0000-0002-0928-2070; Grinstein, Sebastian/0000-0002-6460-8694; Dado, Tomas/0000-0002-7050-2669; Albert, Justin/0000-0003-0253-2505; Gonzalez Sevilla, Sergio/0000-0003-4458-9403; Gorisek, Andrej/0000-0002-3903-3438; Wharton, Andrew/0000-0002-9507-1869; Cai, Yizhou/0000-0003-2246-7456; Chou, Yuan-Tang/0000-0002-2204-5731; Smirnov, Sergei/0000-0002-6778-073X; Li, Zhiying/0000-0001-9800-2626; Guo, Yuxiang/0000-0002-6027-5132; Poveda, Joaquin/0000-0001-8144-1964; Escobar Ibanez, Carlos/0000-0003-4442-4537; Berger, Nicolas/0000-0002-7963-9725; Potti, Harish/0000-0002-0800-9902; Carmignani, Joseph (Joe)/0000-0002-1705-1061; Sciandra, Andrea/0000-0001-7163-501X; Moreno Llacer, Maria/0000-0003-1113-3645; Rummler, Andre/0000-0001-8945-8760; Gutierrez Zagazeta, Luis Felipe/0000-0003-0374-1595; Meng, Lingxin/0000-0002-2901-6589; Weber, Christian/0000-0002-8659-5767; Muenstermann, Daniel/0000-0001-6223-2497; Calafiura, Paolo/0000-0002-1692-1678; Coelli, Simone/0000-0002-5145-3646; Taylor, Wendy/0000-0002-6596-9125; Gonella, Laura/0000-0002-4919-0808; Weber, Michele/0000-0002-2770-9031; Genest, Marie-Helene/0000-0002-4098-2024; Moss, Joshua/0000-0002-6729-4803; Artoni, Giacomo/0000-0002-3477-4499; Liu, Xiaotian/0000-0003-1366-5530; Rousseau, David/0000-0001-7613-8063; Aoki, Masato/0000-0001-7498-0097; Mungo, Davide Pietro/0000-0002-2567-7857; Leitgeb, Clara Elisabeth/0000-0002-0335-503X; Meloni, Federico/0000-0001-7075-2214; Tzovara, Eftychia/0000-0002-0410-0055; Schmitt, Christian/0000-0003-1471-690X; Wu, Xin/0000-0001-7655-389X; Jia, Jiangyong/0000-0002-5725-3397; Gramstad, Eirik/0000-0001-5792-5352; Simsek, Sinem/0000-0002-9650-3846; Schmitt, Stefan/0000-0001-8387-1853; Gustavino, Giuliano/0000-0002-5938-4921; Kowalewski, Robert/0000-0002-7314-0990; Redlinger, George/0000-0002-6437-9991; Brahimi, Nihal/0000-0003-0992-3509; Gaudio, Gabriella/0000-0002-6833-0933; Leblanc, Matt/0000-0001-5977-6418; D'Onofrio, Monica/0000-0003-2408-5099; Su, Dong/0000-0001-6980-0215; Gauzzi, Paolo/0000-0003-4841-5822; Di Luca, Andrea/0000-0002-9074-2133; Dziedzic, Bartosz/0000-0002-0805-9184; Lopez Solis, Alvaro/0000-0002-0511-4766; Dinu, Ioan-Mihail/0000-0002-2683-7349; Resconi, Silvia/0000-0003-2313-4020; Zenz, Seth/0000-0002-9720-1794; Belfkir, Mohamed/0000-0001-9974-1527; Chu, Ming-Chung/0000-0002-1971-0403; Maleev, Victor/0000-0003-1028-8602; Butterworth, Jonathan/0000-0002-5905-5394; Balasubramanian, Rahul/0000-0001-5840-1788; Quinn, Ryan/0000-0002-0879-6045; Clark, Allan/0000-0001-8341-5911This paper presents a measurement of jet-track correlations in photon-jet events, using 1.72 nb(-1) of Pb+Pb data at root s(NN) = 5.02 TeV recorded with the ATLAS detector at the LHC. Events with energetic photon-jet pairs are selected, where the photon and jet are approximately back-to-back in azimuth. The angular correlation between jets and charged-particle tracks with transverse momentum (p(T)) in the range 0.5-2.0 GeV in the hemisphere opposite to the jet, |Delta phi(jet,track)| > pi/2, is measured as a function of their relative pseudorapidity difference, |Delta eta(jet,track)|. In central Pb+Pb collisions, these correlations are predicted to be sensitive to the diffusion wake in the quark-gluon plasma resulting from the lost energy of high-p(T) partons traversing the plasma, with a characteristic modification as a function of |Delta eta(jet,track)|. The correlations are examined with different selections on the jet-to-photon p(T) ratio to select events with different degrees of energy loss. No diffusion wake signal is observed within the current sensitivity and upper limits at 95% confidence level on the diffusion wake amplitude are reported.We thank CERN for the very successful operation of the LHC and its injectors, as well as the support staff at CERN and at our institutions worldwide without whom ATLAS could not be operated efficiently. The crucial computing support from all WLCG partners is acknowledged gratefully, in particular from CERN, the ATLAS Tier-1 facilities at TRIUMF/SFU (Canada), NDGF (Denmark, Norway, Sweden), CC-IN2P3 (France), KIT/GridKA (Germany), INFN-CNAF (Italy), NL-T1 (Netherlands), PIC (Spain), RAL (UK) and BNL (USA), the Tier-2 facilities worldwide and large non-WLCG resource providers. Major contributors of computing resources are listed in Ref. [56]. We gratefully acknowledge the support of the following: ANPCyT, Argentina; YerPhI, Armenia; ARC, Australia; BMWFW and FWF, Austria; ANAS, Azerbaijan; CNPq and FAPESP, Brazil; NSERC, NRC and CFI, Canada; CERN; ANID, Chile; CAS, MOST and NSFC, China; Minciencias, Colombia; MEYS CR, Czech Republic; DNRF and DNSRC, Denmark; IN2P3-CNRS and CEA-DRF/IRFU, France; SRNSFG, Georgia; BMBF, HGF and MPG, Germany; GSRI, Greece; RGC and Hong Kong SAR, China; ISF and Benoziyo Center, Israel; INFN, Italy; MEXT and JSPS, Japan; CNRST, Morocco; NWO, Netherlands; RCN, Norway; MNiSW, Poland; FCT, Portugal; MNE/IFA, Romania; MSTDI, Serbia; MSSR, Slovakia; ARIS and MVZI, Slovenia; DSI/NRF, South Africa; MICIU/AEI, Spain; SRC and Wallenberg Foundation, Sweden; SERI, SNSF and Cantons of Bern and Geneva, Switzerland; NSTC, Taipei; TENMAK, Turkiye; STFC/UKRI, United Kingdom; DOE and NSF, United States of America. Individual groups and members have received support from the following: BCKDF, CANARIE, CRC and DRAC, Canada; CERN-CZ, FORTE and PRIMUS, Czech Republic; COST, ERC, ERDF, Horizon 2020, ICSC-NextGenerationEU and Marie Sklodowska-Curie Actions, European Union; Investissements d'Avenir Labex, Investissements d'Avenir Idex and ANR, France; DFG and AvH Foundation, Germany; Herakleitos, Thales and Aristeia programmes co-financed by EU-ESF and the Greek NSRF, Greece; BSF-NSF and MINERVA, Israel; NCN and NAWA, Poland; La Caixa Banking Foundation, CERCA Programme Generalitat de Catalunya and PROMETEO and GenT Programmes Generalitat Valenciana, Spain; Goran Gustafssons Stiftelse, Sweden; The Royal Society and Leverhulme Trust, United Kingdom. In addition, individual members wish to acknowledge support from the following. Armenia: Yerevan Physics Institute (FAPERJ); CERN: European Organization for Nuclear Research (CERN PJAS); Chile: Agencia Nacional de Investigacion y Desarrollo (Grants No. FONDECYT 1230812, No. FONDECYT 1230987, and No. FONDECYT 1240864); China: Chinese Ministry of Science and Technology (Grants No. MOST2023YFA1605700 and No. MOST-2023YFA1609300), National Natural Science Foundation of China (Grants No. NSFC-12175119, No. NSFC-12275265, and No. NSFC-12075060); Czech Republic: Czech Science Foundation (Grant No. GACR-24-11373S), Ministry of Education Youth and Sports (Grant No. FORTE CZ.02.01.01/00/22_008/0004632), PRIMUS Research Programme (Grant No. PRIMUS/21/SCI/017); EU: H2020 European Research Council (Grant No. ERC-101002463); European Union: European Research Council (Grants No. ERC-948254 and No. ERC-101089007), Horizon 2020 Framework Programme (Grant No. MUCCA-CHIST-ERA-19-XAI-00), European Union, Future Artificial Intelligence Research (Grant No. FAIR-NextGenerationEU PE00000013), Italian Center for High Performance Computing, Big Data and Quantum Computing (ICSC, NextGenerationEU); France: Agence Nationale de la Recherche (Grants No. ANR-20-CE31-0013, No. ANR-21-CE31-0013, No. ANR-21-CE31-0022, and No. ANR-22-EDIR-0002), Investissements d'Avenir Labex (Grant No. ANR-11-LABX-0012); Germany: Baden-Wurttemberg Stiftung (BW Stiftung-Postdoc Eliteprogramme), Deutsche Forschungsgemeinschaft (Grants No. DFG-469666862 and No. DFG-CR 312/5-2); Italy: Istituto Nazionale di Fisica Nucleare (ICSC, NextGenerationEU), Ministero dell'Universita e della Ricerca (Grant No. PRIN-20223N7F8K-PNRR M4.C2.1.1); Japan: Japan Society for the Promotion of Science (Grants No. JSPS KAKENHI JP22H01227, No. JSPS KAKENHI JP22H04944, No. JSPS KAKENHI JP22KK0227, and No. JSPS KAKENHI JP23KK0245); Netherlands: Netherlands Organisation for Scientific Research (Grant No. NWO Veni 2020-VI.Veni.202.179); Norway: Research Council of Norway (Grant No. RCN-314472); Poland: Ministry of Science and Higher Education (Grant IDUB AGH, POB8, D4 No. 9722), Polish National Agency for Academic Exchange (Grant No. PPN/PPO/2020/1/00002/U/00001), Polish National Science Centre (Grants No. NCN 2021/42/E/ST2/00350, No. NCN OPUS 2022/47/B/ST2/03059, No. NCN UMO-2019/34/E/ST2/00393, No. NCN ; H2020 MSCA 945339, No. UMO-2020/37/B/ST2/01043, No. UMO-2021/40/C/ST2/00187, No. UMO-2022/47/O/ST2/00148, No. UMO-2023/49/B/ST2/04085, and No. UMO2023/51/B/ST2/00920); Slovenia: Slovenian Research Agency (ARIS Grant No. J1-3010); Spain: Generalitat Valenciana (Artemisa, FEDER, Grant No. IDIFEDER/2018/048), Ministry of Science and Innovation (Grants No. MCIN ; NextGenEU PCI2022-135018-2, No. MICIN ; FEDER PID2021-125273NB, No. RYC2019-028510-I, No. RYC2020-030254-I, No. RYC2021-031273-I, and No. RYC2022-038164-I), PROMETEO and GenT Programmes Generalitat Valenciana (Grant No. CIDEGENT/2019/027); Sweden: Carl Trygger Foundation (Carl Trygger Foundation Grant No. CTS 22:2312), Swedish Research Council (Swedish Research Council Grants No. 2023-04654, No. VR 2018-00482, No. VR 2022-03845, No. VR 2022-04683, No. VR 2023-03403, and VR Grant No. 2021-03651), Knut and Alice Wallenberg Foundation (Grants No. KAW 2018.0157, No. KAW 2018.0458, No. KAW 2019.0447, and No. KAW 2022.0358); Switzerland: Swiss National Science Foundation (Grant No. SNSF-PCEFP2_194658); United Kingdom: Leverhulme Trust (Leverhulme Trust No. RPG-2020-004), Royal Society (Grant No. NIF-R1-231091); United States of America: U.S. Department of Energy (Grant No. ECA DE-AC02-76SF00515), Neubauer Family Foundation.CERN; NDGF (Denmark, Norway, Sweden); KIT/GridKA (Germany); INFN-CNAF (Italy); NL-T1 (Netherlands), PIC (Spain); BNL (USA); ANPCyT, Argentina; YerPhI, Armenia; ARC, Australia; BMWFW; FWF, Austria; ANAS; CNPq; FAPESP, Brazil; NSERC; CFI, Canada; NSFC, China; MEYS CR, Czech Republic; DNRF; DNSRC, Denmark; IN2P3-CNRS; CEA-DRF/IRFU, France; BMBF; MPG, Germany; RGC and Hong Kong SAR, China; ISF; Benoziyo Center, Israel; INFN, Italy; MEXT; JSPS, Japan; CNRST, Morocco; NWO, Netherlands; RCN, Norway; MNiSW, Poland; FCT, Portugal; MNE/IFA, Romania; MSSR, Slovakia; Wallenberg Foundation, Sweden; SNSF and Cantons of Bern and Geneva, Switzerland; NSTC, Taipei; STFC/UKRI, United Kingdom; DOE; NSF, United States of America; BCKDF; CANARIE; DRAC, Canada; FORTE [CZ.02.01.01/00/22_008/0004632]; PRIMUS, Czech Republic; ERC; ERDF; Marie Sklodowska-Curie Actions, European Union; Investissements d'Avenir Labex, Investissements d'Avenir Idex; ANR, France; DFG; AvH Foundation, Germany - EU-ESF; Greek NSRF, Greece; BSF-NSF; NCN [UMO-2019/34/E/ST2/00393]; La Caixa Banking Foundation; CERCA Programme Generalitat de Catalunya; PROMETEO; Generalitat Valenciana, Spain; Goran Gustafssons Stiftelse, Sweden; Royal Society [NIF-R1-231091]; Leverhulme Trust, United Kingdom; Yerevan Physics Institute (FAPERJ); CERN: European Organization for Nuclear Research (CERN PJAS); Chile: Agencia Nacional de Investigacion y Desarrollo; FONDECYT [1240864]; China: Chinese Ministry of Science and Technology [MOST2023YFA1605700, MOST-2023YFA1609300]; National Natural Science Foundation of China [NSFC-12175119, NSFC-12275265, NSFC-12075060]; Czech Republic: Czech Science Foundation [GACR-24-11373S]; Ministry of Education Youth and Sports; PRIMUS Research Programme [PRIMUS/21/SCI/017]; EU: H2020 European Research Council [ERC-101002463]; European Union: European Research Council [ERC-948254, ERC-101089007]; Horizon 2020 Framework Programme [MUCCA-CHIST-ERA-19-XAI-00]; European Union, Future Artificial Intelligence Research [FAIR-NextGenerationEU PE00000013]; Italian Center for High Performance Computing, Big Data and Quantum Computing (ICSC); France: Agence Nationale de la Recherche [ANR-20-CE31-0013, ANR-21-CE31-0013, ANR-21-CE31-0022, ANR-22-EDIR-0002]; Investissements d'Avenir Labex; Germany: Baden-Wurttemberg Stiftung [BW Stiftung-Postdoc Eliteprogramme]; Deutsche Forschungsgemeinschaft [DFG-469666862, DFG-CR 312/5-2]; Italy: Istituto Nazionale di Fisica Nucleare (ICSC); Ministero dell'Universita e della Ricerca [PRIN-20223N7F8K-PNRR M4.C2.1.1]; Japan: Japan Society for the Promotion of Science; JSPS KAKENHI [JP23KK0245]; Netherlands: Netherlands Organisation for Scientific Research; NWO Veni [2020-VI]; Norway: Research Council of Norway [RCN-314472]; Ministry of Science and Higher Education [IDUB AGH, 9722]; Polish National Agency for Academic Exchange [PPN/PPO/2020/1/00002/U/00001]; Polish National Science Centre; NCN OPUS [2022/47/B/ST2/03059]; NCN H2020 MSCA [945339, UMO-2020/37/B/ST2/01043, UMO-2021/40/C/ST2/00187, UMO-2022/47/O/ST2/00148, UMO-2023/49/B/ST2/04085, UMO2023/51/B/ST2/00920]; Slovenian Research Agency [J1-3010]; Spain: Generalitat Valenciana (Artemisa, FEDER) [IDIFEDER/2018/048]; Ministry of Science and Innovation [NextGenEU PCI2022-135018-2]; MICIN FEDER [PID2021-125273NB, RYC2019-028510-I, RYC2020-030254-I, RYC2021-031273-I, RYC2022-038164-I]; GenT Programmes Generalitat Valenciana [CI

    Search for a New Scalar Decaying Into New Spin-1 Bosons in Four-Lepton Final States With the ATLAS Detector

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    Redlinger, George/0000-0002-6437-9991; Borissov, Guennadi/0000-0002-4226-9521; Barton, Adam/0000-0001-9696-9497; Winter, Benedict Tobias/0000-0001-9606-7688; Meng, Lingxin/0000-0002-2901-6589; Cheu, Elliott/0000-0002-2562-9724; Wharton, Andrew/0000-0002-9507-1869; Kretzschmar, Jan/0000-0002-8515-1355; Meloni, Federico/0000-0001-7075-2214; Bouhova-Thacker, Evelina/0000-0002-5103-1558; Terzo, Stefano/0000-0003-3388-3906; Abusleme, Angel/0000-0003-0762-7204; Smirnova, Oxana/0000-0003-2517-531X; Mckee, Shawn/0000-0002-4551-4502; Jia, Jiangyong/0000-0002-5725-3397; Butterworth, Jonathan/0000-0002-5905-5394; Muenstermann, Daniel/0000-0001-6223-2497; Jones, Roger/0000-0002-6427-3513; Kartvelishvili, Vakhtang/0000-0002-1957-3787; Fox, Harald/0000-0003-3089-6090;A search is conducted for a new scalar boson S, with a mass distinct from that of the Higgs boson, decaying promptly into four leptons (l = e, mu) via an intermediate state containing two on-shell, promptly decaying new spin-1 bosons Z(d): S -> Z(d)Z(d) -> 4l, where the Z(d) boson has a mass between 15 and 300 GeV, and the S boson has a mass between either 30 and 115 GeV or 130 and 800 GeV. The search uses proton-proton collision data collected with the ATLAS detector at the Large Hadron Collider with an integrated luminosity of 139 fb(-1) at a centre-of-mass energy of root s = 13 TeV. No significant excess above the Standard Model background expectation is observed. Upper limits at 95% confidence level are set on the production cross-section times branching ratio, sigma(gg -> S) x B(S -> Z(d)Z(d) -> 4l), as a function of the mass of both particles, m(S) and m(Zd).We gratefully acknowledge the support of ANPCyT, Argentina; YerPhI, Armenia; ARC, Australia; BMWFW and FWF, Austria; ANAS, Azerbaijan; CNPq and FAPESP, Brazil; NSERC, NRC and CFI, Canada; CERN; ANID, Chile; CAS, MOST and NSFC, China; Minciencias, Colombia; MEYS CR, Czech Republic; DNRF and DNSRC, Denmark; IN2P3-CNRS and CEA-DRF/IRFU, France; SRNSFG, Georgia; BMBF, HGF and MPG, Germany; GSRI, Greece; RGC and Hong Kong SAR, China; ISF and Benoziyo Center, Israel; INFN, Italy; MEXT and JSPS, Japan; CNRST, Morocco; NWO, Netherlands; RCN, Norway; MEiN, Poland; FCT, Portugal; MNE/IFA, Romania; MESTD, Serbia; MSSR, Slovakia; ARIS and MVZI, Slovenia; DSI/NRF, South Africa; MICINN, Spain; SRC and Wallenberg Foundation, Sweden; SERI, SNSF and Cantons of Bern and Geneva, Switzerland; NSTC, Taipei; TENMAK, Turkiye; STFC/UKRI, United Kingdom; DOE and NSF, United States of America. Individual groups and members have received support from BCKDF, CANARIE, CRC and DRAC, Canada; CERN-CZ, PRIMUS 21/SCI/017 and UNCE SCI/013, Czech Republic; COST, ERC, ERDF, Horizon 2020, ICSC-NextGenerationEU and Marie Sklodowska-Curie Actions, European Union; Investissements d'Avenir Labex, Investissements d'Avenir Idex and ANR, France; DFG and AvH Foundation, Germany; Herakleitos, Thales and Aristeia programmes cofinanced by EU-ESF and the Greek NSRF, Greece; BSF-NSF and MINERVA, Israel; Norwegian Financial Mechanism 2014-2021, Norway; NCN and NAWA, Poland; La Caixa Banking Foundation, CERCA Programme Generalitat de Catalunya and PROMETEO and GenT Programmes Generalitat Valenciana, Spain; Goran Gustafssons Stiftelse, Sweden; The Royal Society and Leverhulme Trust, United Kingdom. In addition, individual members wish to acknowledge support from Chile: Agencia Nacional de Investigacion y Desarrollo (FONDECYT 1190886, FONDECYT 1210400); China: National Natural Science Founation of China (NSFC-12175119, NSFC-12275265, NSFC-12075060); Czech Republic: PRIMUS Research Programme (PRIMUS/21/SCI/017); EU: H2020 European Research Council (ERC - 101002463, H2020-MSCAIF-2020: HPOFHIC - 10103); European Union: European Research Council (ERC - 948254), Horizon 2020 Framework Programme (MUCCA - CHIST-ERA-19-XAI-00), European Union, Future Artificial Intelligence Research (FAIR-NextGenerationEU PE00000013), Italian Center for High Performance Computing, Big Data and Quantum Computing (ICSC, NextGenerationEU), Marie Sklodowska-Curie Actions (EU H2020 MSC IF GRANT NO 101033496); France: Agence Nationale de la Recherche (ANR-20-CE31-0013, ANR-21-CE31-0013, ANR-21-CE31-0022), Investissements d'Avenir Idex (ANR-11-LABX-0012), Investissements d'Avenir Labex (ANR-11-LABX-0012); Germany: Baden-Wurttemberg Stiftung (BW Stiftung-Postdoc Eliteprogramme), Deutsche Forschungsgemeinschaft (DFG -CR 312/5-1); Italy: Istituto Nazionale di Fisica Nucleare (FELLINI G.A. n. 754496, ICSC, NextGenerationEU); Japan: Japan Society for the Promotion of Science (JSPS KAKENHI JP21H05085, JSPS KAKENHI JP22H01227, JSPS KAKENHI JP22H04944); Netherlands: Netherlands Organisation for Scientific Research (NWO Veni 2020 - VI.Veni.202.179); Norway: Research Council of Norway (RCN-314472); Poland: Polish National Agency for Academic Exchange (PPN/PPO/2020/1/00002/U/00001), Polish National Science Centre (NCN 2021/42/E/ST2/00350, NCN UMO-2019/34/E/ST2/00393, NCN ; H2020 MSCA 945339, UMO2020/37/B/ST2/01043, UMO-2021/40/C/ST2/00187); Slovenia: Slovenian Research Agency (ARIS grant J1-3010); Spain: BBVA Foundation (LEO22-1-603), Generalitat Valenciana (Artemisa, FEDER, IDIFEDER/2018/048), La Caixa Banking Foundation (LCF/BQ/PI20/11760025), Ministry of Science and Innovation (MCIN ; NextGenEU PCI2022-135018-2, MICIN ; FEDER PID2021-125273NB, RYC2019028510I, RYC2020-030254-I, RYC2021-031273-I, RYC2022-038164I), PROMETEO and GenT Programmes Generalitat Valenciana (CIDEGENT/2019/023, CIDEGENT/2019/027); Sweden: Swedish Research Council (VR 2018-00482, VR 2021-03651, VR 2022-03845, VR 202204683), Knut and Alice Wallenberg Foundation (KAW 2017.0100, KAW 2018.0157, KAW 2018.0458, KAW 2019.0447); Switzerland: Swiss National Science Foundation (SNSF - PCEFP2_194658); United Kingdom: Leverhulme Trust (Leverhulme Trust RPG-2020-004); United States of America: U.S. Department of Energy (ECA DE-AC02-76SF00515), Neubauer Family Foundation.ANPCyT, Argentina; YerPhI, Armenia; ARC, Australia; BMWFW; FWF, Austria; ANAS; CNPq; FAPESP, Brazil; NSERC; CFI, Canada; NSFC, China; MEYS CR, Czech Republic; DNRF; DNSRC, Denmark; IN2P3-CNRS; CEA-DRF/IRFU, France; BMBF; MPG, Germany; RGC and Hong Kong SAR, China; ISF; Benoziyo Center, Israel; INFN, Italy; MEXT; JSPS, Japan; CNRST, Morocco; NWO, Netherlands; RCN, Norway; MEiN, Poland; FCT, Portugal; MNE/IFA, Romania; MESTD, Serbia; MSSR, Slovakia; MICINN, Spain; SRC; Wallenberg Foundation, Sweden; SNSF and Cantons of Bern and Geneva, Switzerland; NSTC, Taipei; STFC/UKRI, United Kingdom; DOE; NSF, United States of America; BCKDF; CANARIE; CRC; DRAC, Canada [PRIMUS 21/SCI/017, UNCE SCI/013]; Czech Republic; ERC; ERDF; Marie Sklodowska-Curie Actions, European Union; Investissements d'Avenir Labex, Investissements d'Avenir Idex; ANR, France; DFG; AvH Foundation, Germany; EU-ESF; Greek NSRF, Greece; BSF-NSF; NCN; La Caixa Banking Foundation; CERCA Programme Generalitat de Catalunya; PROMETEO [CIDEGENT/2019/023, CIDEGENT/2019/027]; Generalitat Valenciana, Spain; Goran Gustafssons Stiftelse, Sweden; Royal Society; Leverhulme Trust, United Kingdom; Chile: Agencia Nacional de Investigacion y Desarrollo (FONDECYT) [1190886, FONDECYT 1210400]; China: National Natural Science Founation of China [NSFC-12175119, NSFC-12275265, NSFC-12075060]; Czech Republic: PRIMUS Research Programme [PRIMUS/21/SCI/017]; EU [ERC - 101002463, H2020-MSCAIF-2020: HPOFHIC - 10103]; European Union: European Research Council [ERC - 948254, MUCCA - CHIST-ERA-19-XAI-00]; European Union [FAIR-NextGenerationEU PE00000013]; Italian Center for High Performance Computing, Big Data and Quantum Computing (ICSC); Marie Sklodowska-Curie Actions (EU) [101033496]; France: Agence Nationale de la Recherche [ANR-20-CE31-0013, ANR-21-CE31-0013, ANR-21-CE31-0022]; Investissements d'Avenir Idex [ANR-11-LABX-0012]; Investissements d'Avenir Labex; Germany: Baden-Wurttemberg Stiftung; Deutsche Forschungsgemeinschaft [DFG -CR 312/5-1, 754496]; Japan: Japan Society for the Promotion of Science (JSPS KAKENHI) [JP21H05085, JP22H01227]; Research Council of Norway [RCN-314472]; Polish National Agency for Academic Exchange [PPN/PPO/2020/1/00002/U/00001]; Polish National Science Centre (NCN) [2021/42/E/ST2/00350, UMO2020/37/B/ST2/01043, UMO-2021/40/C/ST2/00187]; Slovenian Research Agency [J1-3010]; BBVA Foundation [LEO22-1-603]; Generalitat Valenciana; FEDER [PID2021-125273NB, RYC2019028510I, RYC2021-031273-I, RYC2022-038164I]; Ministry of Science and Innovation [NextGenEU PCI2022-135018-2]; Swedish Research Council [VR 2018-00482, VR 2021-03651, VR 2022-03845]; Knut and Alice Wallenberg Foundation [KAW 2017.0100, KAW 2018.0157, KAW 2018.0458]; Swiss National Science Foundation [SNSF - PCEFP2_194658]; United Kingdom: Leverhulme Trust (Leverhulme Trust) [RPG-2020-004]; United States of America [ECA DE-AC02-76SF00515]; Neubauer Family Foundatio

    Measurement of T(t)Over-Bar Production in Association with Additional b-Jets in the Eμ Final State in Proton-Proton Collisions at √s=13 TeV with the ATLAS Detector

    No full text
    Bachacou, Henri/0000-0002-2256-4515; Chargeishvili, Bakar/0000-0002-5376-2397; Alvarez Fernandez, Adrian/0000-0003-1525-4620; Qiu, Tong/0000-0001-5047-3031; Rummler, Andre/0000-0001-8945-8760; Potti, Harish/0000-0002-0800-9902; Russell, Heather/0000-0003-4181-0678; Chevalier, Laurent/0000-0003-3762-7264; Principe Martin, Miguel Angel/0000-0002-5085-2717; Jang, Wonho/0000-0002-3665-7747; , Sascha/0000-0003-2941-2829; Weber, Michele/0000-0002-2770-9031; Valente, Marco/0000-0002-0486-9569; Berger, Nicolas/0000-0002-7963-9725; Dziedzic, Bartosz/0000-0002-0805-9184; Little, Jared/0000-0002-9372-0730; Orellana, Gonzalo Enrique/0000-0002-4753-4048; Stugu, Bjarne/0000-0002-1728-9272; Arling, Jan-Hendrik/0000-0002-1577-5090; Goussiou, Anna/0000-0001-6211-7122; Montejo Berlingen, Javier/0000-0001-9213-904X; Mancini, Giada/0000-0001-6158-2751; Stanislaus, Beojan/0000-0001-9007-7658; Ellis, Nicolas/0000-0002-1920-4930; Masubuchi, Tatsuya/0000-0001-9984-8009; Vincter, Manuella/0000-0002-5338-8972; Leney, Katharine/0000-0002-1525-2695; Hansen, Peter Henrik/0000-0002-6764-4789; Van Vulpen, Ivo/0000-0001-7074-5655; Chu, Ming-Chung/0000-0002-1971-0403; Henkelmann, Lars/0000-0001-8231-2080; Rompotis, Nikolaos/0000-0003-2577-1875; Liu, Xinyan/0000-0003-1890-2275; Yang, Hongtao/0000-0003-3554-7113; Bouquet, Romain/0000-0001-9683-7101; Carbone, Antonio/0000-0002-4117-3800; Camarri, Paolo/0000-0002-5732-5645; Derendarz, Dominik/0000-0001-5660-3095; Durglishvili, Archil/0000-0003-4157-592X; Pirttikoski, Antti/0009-0002-3707-1446; Muanza, STeVe/0000-0002-1786-2075; Raine, John/0000-0002-5987-4648; Moenig, Klaus/0000-0002-3169-7117; Kiryunin, Andrey/0000-0001-7490-6890; Martinelli, Luca/0000-0002-4466-3864; Romain, Madar/0000-0002-6875-6408; Alhroob, Muhammad/0000-0001-7569-7111; Chen, Hucheng/0000-0002-9936-0115; Shah, Aashaq/0000-0002-6157-2016; Makovec, Nikola/0000-0001-5124-904X; Morange, Nicolas/0000-0003-0047-7215; Sato, Koji/0000-0001-8988-4065; Camarda, Stefano/0000-0003-0479-7689; Piper, Katie/0000-0002-7669-4518; Ventura, Andrea/0000-0002-3368-3413; Kirk, Julie/0000-0001-8096-7577; Cabrera Urban, Susana/0000-0001-7640-7913; Lloyd, Stephen/0000-0002-5073-2264; Jimenez Pena, Javier/0000-0002-8705-628X; Sawyer, Craig/0000-0002-2027-1428; Vermeulen, Jos/0000-0003-4378-5736; Gonzalez Suarez, Rebeca/0000-0002-6126-7230; Juste, Aurelio/0000-0002-1558-3291; Smirnov, Yury/0000-0002-2891-0781; Weber, Sebastian/0000-0002-2841-1616; Chiarella, Vitaliano/0000-0002-4210-2924; Grosse-Knetter, Jorn/0000-0003-3085-7067; Vigl, Matthias/0000-0003-2281-3822; El Moussaouy, Ali/0000-0002-9669-5374; Djama, Fares/0000-0003-1881-3360; Bianchi, Riccardo Maria/0000-0001-7345-7798; Primavera, Margherita/0000-0002-6866-3818; Keaveney, James/0000-0003-0766-5307; Genest, Marie-Helene/0000-0002-4098-2024; Tu, Yanjun/0000-0002-5865-183X; Burdin, Sergey/0000-0003-4831-4132; Silva Oliveira, Marcos Vinicius/0000-0003-2285-478X; Feligioni, Lorenzo/0000-0002-1403-0951; Dado, Tomas/0000-0002-7050-2669; Gonzalez De La Hoz, Santiago/0000-0001-5304-5390; Martin-Haugh, Stewart/0000-0001-9457-1928; Hill, Ewan/0000-0002-1725-7414; Tian, Yusong/0000-0001-8739-9250; Kowalewski, Robert/0000-0002-7314-0990; Nemecek, Stanislav/0000-0001-8978-7150; Gutierrez Zagazeta, Luis Felipe/0000-0003-0374-1595; Ragusa, Francesco/0000-0002-4064-0489; Faraj, Mohammed/0000-0001-9442-7598; Nielsen, Jason/0000-0002-9175-4419; Xu, Lailin/0000-0001-8997-3199; Zhang, Zhicai/0000-0002-1630-0986; Beau, Tristan/0000-0002-2022-2140; Rohne, Ole Myren/0000-0001-7744-9584; Draguet, Maxence/0000-0003-1530-0519; Marjanovic, Marija/0000-0002-4468-0154; Stark, Giordon/0000-0001-6616-3433; Duda, Dominik/0000-0002-5916-3467; Cepaitis, Vilius/0000-0002-4809-4056; Mascione, Daniela/0000-0001-8660-9893; Duperrin, Arnaud/0000-0002-5789-9825; Dao, Valerio/0000-0003-1645-8393; Walkowiak, Wolfgang/0000-0002-0385-3784; Lefebvre, Michel/0000-0002-5560-0586; Montella, Alessandro/0000-0002-5578-6333; Gonzalez Sevilla, Sergio/0000-0003-4458-9403; Vranjes, Nenad/0000-0001-5415-5225; Marti-Garcia, Salvador/0000-0002-3897-6223; Bella, Gideon/0000-0002-4009-0990; Castillo, Florencia Luciana/0000-0002-1172-1052; Van Gemmeren, Peter/0000-0002-7227-4006; Garcia Navarro, Jose Enrique/0000-0002-0279-0523; Roy, Avik/0000-0002-0116-1012; Vickey, Trevor/0000-0002-1596-2611; Mitsou, Vasiliki A./0000-0002-1533-8886; Pottgen, Ruth/0000-0002-3304-0987; Rousseau, David/0000-0001-7613-8063; Ozturk, Nurcan/0000-0003-1125-6784; Resconi, Silvia/0000-0003-2313-4020; Che, Yimin/0000-0001-6623-1205; Zorbas, Theodore Georgio/0000-0003-2073-4901; Fanti, Marcello/0000-0002-8773-145X; Pianori, Elisabetta/0000-0001-9233-5892; Kourkoumelis, Christine/0000-0003-0083-274X; Lee, Suhyun/0000-0003-0836-416X; Jones, Eleanor/0000-0001-6289-2292; Flores Castillo, Luis Roberto/0000-0003-1551-5974; Iddon, James Philip/0000-0002-2851-5554; Escobar Ibanez, Carlos/0000-0003-4442-4537; Vasile, Matei-Eugen/0000-0001-8415-0759; Yamaguchi, Yohei/0000-0002-3725-4800; Vukotic, Ilija/0000-0003-0472-3516; 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    A Comprehensive Study on the Effectiveness of the Stress and Damage Model Parameters in Predicting the Compression Fracture Behavior of Selective Laser Melted AlSi10Mg BCC Lattices

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    The Johnson and Cook (JC) stress and damage model parameters determined from the machined bulk cylindrical specimens and as-built struts through tension and compression tests were used to model quasi-static compression behavior of selective laser melt-fabricated AlSi10Mg alloy lattices. The lattices had the same cell size (10 mm) and strut diameter (1 mm), but different number of cells (2 x 2 x 2, 10 x 10 x 2 and 5 x 5 x 5) and geometries (sandwich and cubic). Four different sets of JC damage model parameters (brittle and ductile notch-insensitive and compression and tension notch-sensitive) were further implemented in the lattice compression numerical models. The brittle damage model parameters and smaller mesh sizes resulted in cracking the face-sheet corner strut nodes before the occurrence of a bending-dominated initial peak stress. The notch-sensitive damage model parameters exhibited no bent-strut fracture in the middle layers of the lattices and increased the crack initiation strains as compared with the notch-insensitive damage model parameters. Despite significant variations in the initial peak stresses of the tested 2 x 2 x 2 and 10 x 10 x 2 lattices, the implication of the strut micro-tension stress model together with the compression notch-sensitive damage model parameters using 0.25 mm mesh size conservatively approximated the experimental deformation stresses while the machined bulk specimen tensionstress model over predicted the experimental stresses. On the other side, the strut stress model with 0.15 mm mesh size accurately predicted the experimental diagonal shear/fracture mode of struts with a slightly higher numerical initial peak stress. The compression tests on the strut specimens extracted from the as-built lattices yielded similar stress model parameters with the micro-tension tests. The differences between the initial peak stresses of the investigated sandwich and cubic lattices were further explained by the differences in the lattice boundary conditions.This work has received funding from The Scientific and Technological Research Council of Turkiye (TUBITAK) with the grant No: 20AG051 and 20AG053 under the TUBITAK's 1004 Center of Excellence Support Program.Scientific and Technological Research Council of Turkiye (TUBITAK) [20AG051, 20AG053

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