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Thermal analysis of high-bandwidth and energy-efficient 980 nm VCSELs with optimized quantum well gain peak-to-cavity resonance wavelength offset

机译:具有优化的量子阱增益峰腔谐振波长偏移的高带宽节能980 nm VCSEL的热分析

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摘要

The static and dynamic performance of vertical-cavity surface-emitting lasers (VCSELs) used as light-sources for optical interconnects is highly influenced by temperature. We study the effect of temperature on the performance of high-speed energy-efficient 980 nm VCSELs with a peak wavelength of the quantum well offset to the wavelength of the fundamental longitudinal device cavity mode so that they are aligned at around 60 ℃. A simple method to obtain the thermal resistance of the VCSELs as a function of ambient temperature is described, allowing us to extract the active region temperature and the temperature dependence of the dynamic and static parameters. At low bias currents, we can see an increase of the - 3 dB modulation bandwidth f_(-3dB) with increasing active region temperature, which is different from the classically known situation. From the detailed analysis of f_(-3dB) versus the active region temperature, we obtain a better understanding of the thermal limitations of VCSELs, giving a basis for next generation device designs with improved temperature stability.
机译:垂直腔表面发射激光器(VCSEL)用作光学互连的光源的静态和动态性能受温度的影响很大。我们研究了温度对高速节能型980 nm VCSEL的性能的影响,量子阱的峰值波长与基本纵向器件腔模的波长发生了偏移,从而使它们在60℃附近对准。描述了一种获取VCSEL的热阻随环境温度变化的简单方法,使我们能够提取有源区温度以及动态和静态参数的温度依赖性。在低偏置电流下,我们可以看到-3 dB的调制带宽f _(-3dB)随着有源区温度的升高而增加,这不同于传统上已知的情况。通过对f _(-3dB)对有源区温度的详细分析,我们可以更好地了解VCSEL的热限制,从而为具有更高温度稳定性的下一代器件设计提供基础。

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  • 来源
    《Applied Physics Letters》 |2017年第24期|243508.1-243508.4|共4页
  • 作者单位

    College of Mathematical and Physical Sciences, Qingdao University of Science and Technology, 266061 Qingdao, China;

    Institut fur F estkoerperphysik and Zentrum fur Nanophotonik, Technische Universitaet Berlin, Hardenbergstrasse 36,10623 Berlin, Germany;

    College of Mathematical and Physical Sciences, Qingdao University of Science and Technology, 266061 Qingdao, China,State Key Lab of Luminescence and Applications, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, 130033 Changchun, China;

    Institut fur F estkoerperphysik and Zentrum fur Nanophotonik, Technische Universitaet Berlin, Hardenbergstrasse 36,10623 Berlin, Germany;

    Institut fur F estkoerperphysik and Zentrum fur Nanophotonik, Technische Universitaet Berlin, Hardenbergstrasse 36,10623 Berlin, Germany,King Abdul-Aziz University, 21589 Jeddah, Kingdom of Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:14:27

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