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5篇 您的检索式:作者名="shouhuan"
    题名 作者 年代 出处 被引量
1Optical frequency modulation continuous wave coherent laser radar for spacecraft safelanding vector velocity measurement显示文摘Sui Xiaolin Zhou shouhuan 0,,:1
2Investigation of tunable stretcher for ultrashort pulses based on silica wires with sub- wavelength-diameters显示文摘Zhou Guorui Feng Guoying Zhou Shouhuan 2012Optics and Laser Technology2012,44,4:1
3Thl/Th2 predominance and proinflammatory cytokines determine the elinieopathological severity of IgA nephropathy 显示文摘Chun Soo Lira Shouhuan Zheng Yon Su Kim 2001Nephrol Dial Transplant2001,16,:1
4Investigation of laser diode face-pumped high average power heat capacity laser显示文摘ZHANG Shenjin ZHOU Shouhuan TANG Xiaojun 2006Chin Optics Lett2006,4,11:1
5Multi-junction cascaded vertical-cavity surface-emitting laser with a high power conversion efficiency of 74%显示文摘High electro-optical conversion efficiency is one of the most distinctive features of semiconductor lasers as compared to other types of lasers.Its further increase remains a significant objective.Further enhancing the efficiency of edgeemitting lasers(EEL),which represent the highest efficiency among semiconductor lasers at present,is challenging.The efficiency of vertical cavity surface emitting lasers(VCSELs)has always been relatively low compared to EEL.This paper,combining modeling with experiments,demonstrates the potential of multi-junction cascaded VCSELs to achieve high efficiency beyond that of EELs,our simulations show,that a 20-junction VCSEL can achieve an efficiency of more than 88%at room temperature.We fabricated VCSEL devices with different numbers of junctions and compared their energy efficiency.15-junction VCSELs achieved a maximum efficiency of 74%at room temperature under nanosecond driving current,the corresponding differential quantum efficiency exceeds 1100%,being the largest electro-optical conversion efficiency and differential quantum efficiency reported until now for VCSELs.Yao Xiao Jun Wang Heng Liu Pei Miao Yudan Gou Zhicheng Zhang Guoliang Deng Shouhuan Zhou 2024Light(Science & Applications)2024,13,3:0
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