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通过利用封装引起的拉伸应变实现具有单偏振输出的高功率和单模垂直腔面发射激光器阵列。

High-power and single-mode VCSEL arrays with single-polarized outputs by using package-induced tensile strain.

作者信息

Shi Jin-Wei, Khan Zuhaib, Horng Ray-Hua, Yeh Hsiao-Yun, Huang Chun-Kai, Liu Cheng-Yi, Shih Jie-Chen, Chang Yung-Hao, Yen Jia-Liang, Sheu Jinn-Kong

出版信息

Opt Lett. 2020 Sep 1;45(17):4839-4842. doi: 10.1364/OL.398896.

DOI:10.1364/OL.398896
PMID:32870871
Abstract

In this work, we demonstrate a novel high-power vertical-cavity surface-emitting laser (VCSEL) array with highly single-mode (SM) and single-polarized output performance without significantly increasing the intra-cavity loss and threshold current (th). By combining a low-loss zinc-diffusion aperture with an electroplated copper substrate, we can obtain a highly SM output (side mode suppression ratio >50) with a very narrow divergence angle (1/:∼10) under high output power (3.1 W; 1% duty cycle) and sustain a single polarization state, with a polarization suppression ratio of around 9 dB, under the full range of bias currents. Compared to the reference device without the copper substrate, the demonstrated array can not only switch the output optical spectra from quasi-SM to highly SM but also maintain a close threshold current value (th: 0.8 versus 0.7 mA per unit device) and slope efficiency. The enhancement in fundamental mode selectivity of our VCSEL structure can be attributed to the single-polarized lasing mode induced by tensile strain, which is caused by the electroplated copper substrate, as verified by the double-crystal x-ray measurement results.

摘要

在这项工作中,我们展示了一种新型高功率垂直腔面发射激光器(VCSEL)阵列,其具有高度单模(SM)和单偏振输出性能,而不会显著增加腔内损耗和阈值电流(th)。通过将低损耗锌扩散孔径与电镀铜衬底相结合,我们可以在高输出功率(3.1 W;1%占空比)下获得具有非常窄发散角(1/:∼10)的高度单模输出(边模抑制比>50),并在整个偏置电流范围内维持单偏振状态,偏振抑制比约为9 dB。与没有铜衬底的参考器件相比,所展示的阵列不仅可以将输出光谱从准单模切换到高度单模,还能保持接近的阈值电流值(th:每单位器件0.8对0.7 mA)和斜率效率。我们的VCSEL结构在基模选择性方面的增强可归因于由电镀铜衬底引起的拉伸应变诱导的单偏振激光模式,这已通过双晶X射线测量结果得到验证。

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