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Qingyang Du
Qingyang Du
Zhejiang Lab
Verified email at zhejianglab.edu.cn
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Cited by
Year
Broadband transparent optical phase change materials for high-performance nonvolatile photonics
Y Zhang, JB Chou, J Li, H Li, Q Du, A Yadav, S Zhou, MY Shalaginov, ...
Nature communications 10 (1), 4279, 2019
8822019
Reconfigurable all-dielectric metalens with diffraction-limited performance
MY Shalaginov, S An, Y Zhang, F Yang, P Su, V Liberman, JB Chou, ...
Nature communications 12 (1), 1225, 2021
2632021
Ultra-thin high-efficiency mid-infrared transmissive Huygens meta-optics
L Zhang, J Ding, H Zheng, S An, H Lin, B Zheng, Q Du, G Yin, J Michon, ...
Nature communications 9 (1), 1481, 2018
1962018
Monolithic integration of broadband optical isolators for polarization-diverse silicon photonics
Y Zhang, Q Du, C Wang, T Fakhrul, S Liu, L Deng, D Huang, P Pintus, ...
Optica 6 (4), 473-478, 2019
1602019
Single-step deposition of cerium-substituted yttrium iron garnet for monolithic on-chip optical isolation
XY Sun, Q Du, T Goto, MC Onbasli, DH Kim, NM Aimon, J Hu, CA Ross
Acs Photonics 2 (7), 856-863, 2015
1072015
Chip-scale broadband spectroscopic chemical sensing using an integrated supercontinuum source in a chalcogenide glass waveguide
Q Du, Z Luo, H Zhong, Y Zhang, Y Huang, T Du, W Zhang, T Gu, J Hu
Photonics Research 6 (6), 506-510, 2018
1002018
Low-loss photonic device in Ge–Sb–S chalcogenide glass
Q Du, Y Huang, J Li, D Kita, J Michon, H Lin, L Li, S Novak, K Richardson, ...
Optics letters 41 (13), 3090-3093, 2016
872016
Ultra-compact nonvolatile phase shifter based on electrically reprogrammable transparent phase change materials
C Ríos, Q Du, Y Zhang, CC Popescu, MY Shalaginov, P Miller, C Roberts, ...
PhotoniX 3 (1), 26, 2022
842022
High‐performance, high‐index‐contrast chalcogenide glass photonics on silicon and unconventional non‐planar substrates
Y Zou, D Zhang, H Lin, L Li, L Moreel, J Zhou, Q Du, O Ogbuu, S Danto, ...
Advanced Optical Materials 2 (5), 478-486, 2014
752014
Broadband transparent optical phase change materials
Y Zhang, J Li, J Chou, Z Fang, A Yadav, H Lin, Q Du, J Michon, Z Han, ...
CLEO: Science and Innovations, JTh5C. 4, 2017
632017
Synthesis of spindle-like kesterite Cu2ZnSnS4 nanoparticles using thiorea as sulfur source
M Wei, Q Du, D Wang, W Liu, G Jiang, C Zhu
Materials Letters 79, 177-179, 2012
582012
Monolithic on-chip magneto-optical isolator with 3 dB insertion loss and 40 dB isolation ratio
Q Du, C Wang, Y Zhang, Y Zhang, T Fakhrul, W Zhang, C Gonçalves, ...
ACS photonics 5 (12), 5010-5016, 2018
562018
The band alignment at CdS/Cu2ZnSnSe4 heterojunction interface
J Li, M Wei, Q Du, W Liu, G Jiang, C Zhu
Surface and Interface Analysis 45 (2), 682-684, 2013
532013
Ultra-compact nonvolatile photonics based on electrically reprogrammable transparent phase change materials
C Ríos, Q Du, Y Zhang, CC Popescu, MY Shalaginov, P Miller, C Roberts, ...
arXiv preprint arXiv:2105.06010, 2021
472021
Synthesis of New Earth-abundant Kesterite Cu2MgSnS4 Nanoparticles by Hot-injection Method
M Wei, Q Du, R Wang, G Jiang, W Liu, C Zhu
Chemistry Letters 43 (7), 1149-1151, 2014
462014
Foldable and Cytocompatible Sol-gel TiO2 Photonics
L Li, P Zhang, WM Wang, H Lin, AB Zerdoum, SJ Geiger, Y Liu, N Xiao, ...
Scientific reports 5 (1), 13832, 2015
442015
The study of radiation effects in emerging micro and nano electro mechanical systems (M and NEMs)
CN Arutt, ML Alles, W Liao, H Gong, JL Davidson, RD Schrimpf, RA Reed, ...
Semiconductor science and technology 32 (1), 013005, 2016
412016
A new twist on glass: A brittle material enabling flexible integrated photonics
L Li, H Lin, J Michon, Y Huang, J Li, Q Du, A Yadav, K Richardson, T Gu, ...
International Journal of Applied Glass Science 8 (1), 61-68, 2017
362017
Gamma radiation effects in amorphous silicon and silicon nitride photonic devices
Q Du, Y Huang, O Ogbuu, W Zhang, J Li, V Singh, AM Agarwal, J Hu
Optics letters 42 (3), 587-590, 2017
362017
The band offset at CdS/Cu2ZnSnS4 heterojunction interface
J Li, Q Du, W Liu, G Jiang, X Feng, W Zhang, J Zhu, C Zhu
Electronic Materials Letters 8, 365-367, 2012
362012
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