关注
Shi-Chao Zhu
Shi-Chao Zhu
未知所在单位机构
在 fisilink.com 的电子邮件经过验证
标题
引用次数
引用次数
年份
Enhancement of the modulation bandwidth for GaN-based light-emitting diode by surface plasmons
SC Zhu, ZG Yu, LX Zhao, JX Wang, JM Li
Optics express 23 (11), 13752-13760, 2015
632015
Influence of quantum confined Stark effect and carrier localization effect on modulation bandwidth for GaN-based LEDs
S Zhu, S Lin, J Li, Z Yu, H Cao, C Yang, J Li, L Zhao
Applied Physics Letters 111 (17), 2017
612017
GaN with laterally aligned nanopores to enhance the water splitting
C Yang, L Liu, S Zhu, Z Yu, X Xi, S Wu, H Cao, J Li, L Zhao
The Journal of Physical Chemistry C 121 (13), 7331-7336, 2017
532017
GaN-based LEDs for light communication
LX Zhao, SC Zhu, CH Wu, C Yang, ZG Yu, H Yang, L Liu
Science China Physics, Mechanics & Astronomy 59, 1-10, 2016
372016
Enhancing the spontaneous emission rate by modulating carrier distribution in GaN-based surface plasmon light-emitting diodes
S Zhu, Z Yu, L Liu, C Yang, H Cao, X Xi, J Li, L Zhao
Optics Express 25 (9), 9617-9627, 2017
262017
Progress and prospects of GaN-based LEDs using nanostructures
LX Zhao, ZG Yu, B Sun, SC Zhu, PB An, C Yang, L Liu, JX Wang, JM Li
Chinese Physics B 24 (6), 068506, 2015
262015
GaN-based flip-chip parallel micro LED array for visible light communication
SC Zhu, LX Zhao, C Yang, HC Cao, ZG Yu, L Liu
International Conference on Optoelectronics and Microelectronics Technology …, 2017
222017
Surface plasmon-enhanced nanoporous GaN-based green light-emitting diodes with Al2O3 passivation layer
ZG Yu, LX Zhao, XC Wei, XJ Sun, PB An, SC Zhu, L Liu, LX Tian, F Zhang, ...
Optics Express 22 (106), A1596-A1603, 2014
222014
Optimization of the nanopore depth to improve the electroluminescence for GaN-based nanoporous green LEDs
ZG Yu, LX Zhao, SC Zhu, XC Wei, XJ Sun, L Liu, JX Wang, JM Li
Materials Science in Semiconductor Processing 33, 76-80, 2015
92015
Design of GaN‐based surface plasmon LEDs to enhance the modulation bandwidth and light output
L Liu, L Zhao, S Zhu, Z Yu, P An, C Yang, C Wu, J Li
physica status solidi (c) 13 (5‐6), 283-288, 2016
42016
Automatic bias control of a silicon photonics dual parallel Mach–Zehnder optical modulator
SC Zhu, S Yu, X Lei, L Lu, Q Cao
AOPC 2021: Micro-optics and MOEMS 12066, 150-153, 2021
32021
New method of measurement on the extinction ratio of silicon photonics Mach–Zehnder IQ-modulators
SC Zhu, X Lei, S Yu, L Lu, Q Cao
AOPC 2022: Optoelectronics and Nanophotonics 12556, 181-184, 2023
22023
An improved integrated coherent receiver optical-electronic testing system
X Lei, J Peng, B Liu, S Zhu, S Yu, L Lu, Q Cao, H Jiang
AOPC 2022: Optoelectronics and Nanophotonics 12556, 244-247, 2023
12023
A chip-level 400G integrated coherent receiver optical-electronic testing system
X Lei, Q Cao, S Zhu, S Yu, L Lu, Y Cheng, H Jiang
AOPC 2021: Micro-optics and MOEMS 12066, 328-331, 2021
12021
Progress of 800G integrated coherent receiver
X Lei, C Liu, S Yu, S Zhu, B Liu, Q Cao, X Xiao, D Chen
Conference on Spectral Technology and Applications (CSTA 2024) 13283, 741-744, 2024
2024
Study of different methods in 800G integrated coherent receiver testing
X Lei, S Zhu, S Yu, B Liu, C Liu, J Peng, A Xu, Q Cao
AOPC 2023: AI in Optics and Photonics 12966, 407-410, 2023
2023
Effects of carrier leakage problem on coherent communications
Q Cao, S Yu, SC Zhu
AOPC 2023: AI in Optics and Photonics 12966, 354-358, 2023
2023
High extinction ratio of silicon photonics Mach–Zehnder IQ-modulators with wide optical bandwidth through power compensation
SC Zhu, X Guo, GD Deng, X Lei, Q Cao
AOPC 2023: AI in Optics and Photonics 12966, 16-20, 2023
2023
Impact of driver frequency peaking on system level performance when integrated with coherent modulator
S Yu, L Lu, S Zhu, X Lei, Q Cao
AOPC 2022: Optoelectronics and Nanophotonics 12556, 228-231, 2023
2023
Highly balanced 2× 2 multimode interferometers by optimizing the coupling of the taper fan-out
S Yu, S Zhu, X Lei, L Lu, Q Cao
AOPC 2021: Micro-optics and MOEMS 12066, 332-335, 2021
2021
系统目前无法执行此操作,请稍后再试。
文章 1–20