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Influence of Resonator Length on Performance of Nitride TJ VCSEL

机译:谐振器长度对氮化物TJ vcsel性能的影响

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This paper presents computer simulations of nitride-based tunnel-junction (TJ) vertical-cavity surface emitting lasers (VCSELs). The analyzed structures are non-polar continuous wave VCSELs with dielectric distributed Bragg reflectors (DBRs) emitting at around 405 nm. Both electric contacts are in the form of rings that surround the DBRs. The bottom electric contact also acts as a thermal contact between the laser and the heat sink, because the dielectric DBR is a thermal insulator. The results of our study show that the thickness of the laser's resonator and its absorption coefficient each have a very strong impact on both the threshold current and emitted power. A thick resonator reduces the thermal resistance of the device, but increases the optical absorption. The optimal resonator thickness depends on the absorption coefficient of the resonator material, different possible values for which are investigated here. Moreover, VCSELs with TJs has been compared with similar devices, with semi-transparent ITO contacts and without a TJ.
机译:本文介绍了基于氮化物的隧道接线(TJ)垂直腔表面发射激光器(VCSELs)的计算机模拟。分析的结构是非极性连续波VCSEL,其介电分布布拉格反射器(DBR)在约405nm处发射。两个电触点都是围绕DBR的环形的形式。底部电触点还用作激光器和散热器之间的热接触,因为电介质DBR是热绝缘体。我们的研究结果表明,激光器的谐振器的厚度和其吸收系数各自对阈值电流和发射功率具有非常强烈的影响。厚的谐振器降低了器件的热阻,但增加了光学吸收。最佳谐振器厚度取决于谐振器材料的吸收系数,这里研究了不同的可能值。此外,已经将具有TJS的VCSEL与类似的设备进行比较,具有半透明ITO接触和没有TJ。

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