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Thermal analysis of high-bandwidth and energy-efficient 980 nm VCSELs with optimized quantum well gain peak-to-cavity resonance wevelength offset
Li, H.; P. Wolf; X. W. Jia; J. A. Lott and D. Bimberg
2017
发表期刊Applied Physics Letters
卷号111期号:24
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 980nm 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 degrees C. 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. Published by AIP Publishing.
收录类别sci ; ei
语种英语
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/58998
专题中科院长春光机所知识产出
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Li, H.,P. Wolf,X. W. Jia,et al. Thermal analysis of high-bandwidth and energy-efficient 980 nm VCSELs with optimized quantum well gain peak-to-cavity resonance wevelength offset[J]. Applied Physics Letters,2017,111(24).
APA Li, H.,P. Wolf,X. W. Jia,&J. A. Lott and D. Bimberg.(2017).Thermal analysis of high-bandwidth and energy-efficient 980 nm VCSELs with optimized quantum well gain peak-to-cavity resonance wevelength offset.Applied Physics Letters,111(24).
MLA Li, H.,et al."Thermal analysis of high-bandwidth and energy-efficient 980 nm VCSELs with optimized quantum well gain peak-to-cavity resonance wevelength offset".Applied Physics Letters 111.24(2017).
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