11,308 research outputs found
thomashill8822/ARIES-Project-1: ARIES-Project-1
Code for data processing/analysis for ARIES research placement summer 2021 - data from 10/6 and 21/
thomashill8822/ARIES-Project-2: Aries-Project-2
<p>Code for data processing/analysis for ARIES research placement summer 2021 - data from 13.8</p>
Academia meets Industry Event 1
The ARIES WP14, Promoting Innovation, intends to to ensure that technology developments inside ARIES are properly evaluated and assessed with the final aim to provide society with identified commercial applications of the supported research potential.
Relation with industry is key to coordination and joint research activities, increasing synergies between laboratories, universities, specialized institutes and applied research institutes in the consortium. This deliverable reports the 1st ARIES meets industry event, which has been dedicated to Additive Manufacturing and Advanced Technologies for Accelerator Application
First long length industrial High Temperature Superconductor
In ARIES is foreseen to produce and characterize HTS tapes of REBCO of higher performance with respect to the one developed in EuCARD2. We aim to develop the process to deposit REBCO film on a 50 m substrate of stainless steel, a novel process never attempted so far. The scope of ARIES program is to increase the world record of engineering critical current density, JE, obtained in EuCARD2, from 400-600 A/mm2 at 4.2 K 20 T to 600-1000 A/mm2. This Deliverable report describes the successful delivery of various long lengths, fulfilling the ARIES goal of obtaining more than 100 meters of length with engineering critical current density above 800 A/mm2
Main Highlights of ARIES WP15 Collaboration
An international collaboration of research teams from CEA (France), CERN (Switzerland), INFN/LNL (Italy), HZB and USI (Germany), IEE (Slovakia), RTU (Latvia) and STFC/DL (UK), are working together on better understanding of how to improve the properties of superconducting thin films (ScTF) for RF cavities. The collaboration has been formed as WP15 in the H2020 ARIES project funded by EC. The systematic study of ScTF covers: Cu substrate polishing with different techniques (EP, SUBU, EP+SUBU, tumbling, laser), Nb, NbN, Nb₃Sn and SIS film deposition and characterisation, Laser post deposition treatments, DC magnetisation characterisation, application of all obtained knowledge on polishing, deposition and characterisation, Laser post deposition treatments, DC magnetisation characterisation, application to the QPR samples for testing the films at RF conditions. The preparation, deposition and characterisation of each sample involves 3-5 partners enhancing the capability of each other and resulting in a more complete analysis of each film. The talk will give an overview of the collaborative research and will be an introduction to the detailed talks given by the team members
Electron beam dynamics studies
The electron gun to be built and tested within ARIES WP16 is designed for integration into an electron lens for space-charge compensation in the heavy ion synchrotron SIS18. In order to verify the suitability of the gun design for this purpose, electron beam dynamics simulations have been performed with special focus on extraction and transport of the electron beam into the interaction region, where the requirements on the electron beam properties for space-charge compensation are defined. In this report, an overview over the layout of the electron lens is given and results of the electron beam dynamics simulations are presented
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