59,196 research outputs found
Dataset for 'High-average-power picosecond mid-infrared OP-GaAs OPO'
This dataset supports the publication: Qiang Fu, Lin Xu, Sijing Liang, Peter Shardlow, David Shepherd, Shaif-Ul Alam, David Richardson High-average-power picosecond mid-infrared OP-GaAs OPO. Optics Express
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Dataset for High beam quality, watt-level, widely tunable, mid-infrared OP-GaAs optical parametric oscillator
Data supporting the publications: Fu, Q., Xu, L., Liang, S., Shardlow, P., Shepherd, D., Alam, S-U., & Richardson, D. (Accepted/In press). High beam quality, watt-level, widely tunable, mid-infrared OP-GaAs optical parametric oscillator. Optics Letters. </span
Liang ban qiu yu an sui bi.
梁晉竹紹壬撰 ; [標點者許慕羲].Liang Jinzhu Shaoren zhuan ; [biao dian zhe Xu Muxi]
Xinyuan-Liang/SC-shapes-the-maturation-of-cortical-morphology: v1.0.0
<p>Relevant data for the article "Liang X, Sun L, Liao X, Lei T, Xia M, Duan D, Zeng Z, Xu Z, Men W, Wang Y, Tan S, Gao J, Qin S, Tao S, Dong Q, Zhao T, He Y, Structural connectome architecture shapes the maturation of cortical morphology from childhood to adolescence. bioRxiv, 2022, https://www.biorxiv.org/content/10.1101/2022.12.15.520527v2"
Contents include all source code and intermediate data during the main analysis. Demo data for plotting figures can be found in the "fig" folder. See the README file for details.</p>
Dataset: Thulium-fiber-laser-pumped, high-peak-power, picosecond, mid-infrared orientation-patterned GaAs optical parametric generator and amplifier
Dataset supports:
Xu, L., Fu, Q., Liang, S., Shepherd, D., Richardson, D., & Alam, S-U. (2017). Thulium-fiber-laser-pumped, high-peak-power, picosecond, mid-infrared orientation-patterned GaAs optical parametric generator and amplifier. Optics Letters, 42(19), 4036-4039. DOI: 10.1364/OL.42.004036</span
Dataset supporting the publication "Wideband (13.7 THz) Gain-Flattened Yb-Doped Fiber Amplifier for Telecommunication Applications"
Dataset supporting the publication:
X. Huang, S. Liang, L. Xu, D. J. Richardson and Y. Jung, "Wideband (13.7 THz) Gain-Flattened Yb-Doped Fiber Amplifier for Telecommunication Applications," in IEEE Photonics Technology Letters, vol. 36, no. 12, pp. 791-794, 15 June15, 2024, doi: 10.1109/LPT.2024.3396772.
This dataset contains experimental and simulated data for the paper. The data is presented in excel file, of a dual-stage, wideband gain-flattened ytterbium-doped fiber amplifier specifically tailored for 1 μ m data transmission. The data shows that our wideband amplifier offers significant potential for high-capacity wavelength-division multiplexed transmission in the 1 μ m wavelength regime.
Related projects:
EPSRC funded “Airguide Photonics” Programme Grant (EP/P030181/1), “National Hub in High Value Photonics Manufacturing” (EP/N00762X/1) and project REASON, a UK government funded project under the Future Open Networks Research Challenge (FONR) sponsored by the Department of Science and Innovation and Technology (DSIT).
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Miagrammopes rutundus Liang & Cai & Liu & Yin & Xu 2021, new species
Miagrammopes rutundus Liang & Xu new species Figures 4–6 urn:lsid:zoobank.org:act: 15E8F802-2653-4076-8098-4FF8A72C2399 Type material. Holotype (Ulob-0001- HNU): ♀ CHINA, Guangxi Zhuang Autonomous Region, Chongzuo City, Longzhou County, Nonggang National Reserve, Nonggang Protection Station, 22°27.87'N, 106°55.42'E, 188 m, 28 X, 2017, Ailan He, Keke Liu, Qu Cai, Jihe Liu, Jinxin Liu, Zongguang Huang leg. Etymology. The specific name is derived from the Latin “rutundus”, meaning “round”, referring to the shape of retrolateral bursa, and is an adjective. Diagnosis. The female of the new species resembles that of Miagrammopes lehtineni (Wunderlich, 1976) in having similar vulva but can be distinguished by different shapes and relative sizes of prolateral bursae (PB): prolateral bursae slightly horizontal oval, and almost as large as retrolateral bursae in this species (Figs 5, 6), while prolateral bursae absolutely longitudinal oval, and much larger than retrolateral bursa in M. lehtineni (Wunderlich 1976: fig. 8). Description. Female (holotype; Ulob-0001-HNU): Total length 7.66, carapace 1.24 long, 1.04 wide, 0.53 high, abdomen 2.99 long, 1.22 wide. Carapace (Fig. 4A, D) dark, with a pair of spots located on both sides of anterior part, and an irregular pattern between PMEs. Eye diameters: PME 0.12; PLE 0.12; PME-PME 0.51; PME-PLE 0.27. Chelicerae (Fig. 4D) pale, without teeth, and with tubercular apophyses and bristles along margins of fang groove. Endite (Fig. 4E) pale, longer than wide, poster-medially fused with labium, with some hairs. Labium (Fig. 4E) dropshaped, and light color in the terminus. Sternum (Fig. 4E) yellowish, divided into three unequal parts, bearing a few hairs. Leg measurements I 2.58 (1.57, 0.52, 0.93, 1.16, 0.4); II 2.31 (0.69, 0.38, 0.49, 0.46, 0.29); III 1.94 (0.62, 0.21, 0.40, 0.41, 0.30); IV 4.15 (1.09, 0.36, 1.08, 0.65, 0.32). Leg formula 1423. Legs (Fig. 4A–C, F) yellowish, and metatarsus of leg IV bearing calamistrum and macrosetae. Abdomen deep brown, with three pairs of greyish white patches in dorsal view (Fig. 4A), and with a pair of greyish white in front of spinnerets and a large greyish white pattern behind spinnerets in ventral view (Fig. 4B). Epigynum (Figs 5, 6). Atrium and copulatory opening inconspicuous. Prolateral bursae (PB) oval, slightly slanting towards lateral sides. Retrolateral bursae (RB) spherical, far from each other and almost as large as PB. Copulatory ducts (CD) straight, long and slender. Connecting tube (CT) short, slightly curved, and almost as large as CD in size of tube diameter. Fertilization ducts small, membranous and far from each other. Male. Unknown. Distribution. Only the type locality, China (Guangxi Zhuang Autonomous Region) (Fig. 13).Published as part of Liang, Yun, Cai, Qu, Liu, Jinxin, Yin, Haiqiang & Xu, Xiang, 2021, Three species of hackled-orb web spider genus Miagrammopes from China (Araneae, Uloboridae), pp. 564-576 in Zootaxa 5004 (4) on pages 568-569, DOI: 10.11646/zootaxa.5004.4.5, http://zenodo.org/record/514082
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