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Impact of Device Parameters on Thermal Performance of High-Speed Oxide-Confined 850-nm VCSELs

机译:器件参数对高速氧化物限制的850nm VCSEL的热性能的影响

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摘要

We study the impact of device parameters, such as inner-aperture diameter and cavity photon lifetime, on thermal rollover mechanisms in 850-nm, oxide-confined, vertical-cavity surface-emitting lasers (VCSELs) designed for high-speed operation. We perform measurements on four different VCSELs of different designs and use our empirical thermal model for calculating the power dissipated with increasing bias currents through various physical processes such as absorption within the cavity, carrier thermalization, carrier leakage, spontaneous carrier recombination, and Joule heating. When reducing the top mirror reflectivity to reduce internal optical absorption loss we find an increase of power dissipation due to carrier leakage. There is therefore a trade-off between the powers dissipated owing to optical absorption and carrier leakage in the sense that overcompensating for optical absorption enhances carrier leakage (and vice versa). We further find that carrier leakage places the ultimate limit on the thermal performance for this entire class of devices. Our analysis yields useful design optimization strategies for mitigating the impact of carrier leakage and should thereby prove useful for the performance enhancement of 850-nm, high-speed, oxide-confined VCSELs.
机译:我们研究了诸如内孔直径和腔体光子寿命之类的设备参数对设计用于高速工作的850 nm氧化物受限垂直腔表面发射激光器(VCSEL)中的热翻转机制的影响。我们对不同设计的四个不同VCSEL进行测量,并使用经验热模型通过各种物理过程(例如腔内吸收,载流子热化,载流子泄漏,自发载流子重组和焦耳热)计算随着偏置电流增加而耗散的功率。当降低顶镜反射率以减少内部光吸收损耗时,我们发现由于载流子泄漏而导致的功耗增加。因此,从某种意义上来说,由于光学吸收和载流子泄漏而导致的功率消耗之间存在权衡,这是因为对光学吸收的过度补偿会增加载流子泄漏(反之亦然)。我们进一步发现,载流子泄漏对整个设备类别的热性能造成了最终限制。我们的分析提出了有用的设计优化策略,以减轻载流子泄漏的影响,因此应被证明对提高850 nm高速,氧化物受限的VCSEL的性能有用。

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