Resonant light emission from uniaxially tensile-strained Ge microbridges

Peiji Zhou,Xuejun Xu, Sho Matsushita,Kentarou Sawano,Takuya Maruizumi

JAPANESE JOURNAL OF APPLIED PHYSICS(2018)

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摘要
A highly strained germanium microbridge is a promising platform for realizing monolithically integrated lasers on a silicon substrate. However, it remains challenging to combine it with optical resonators. Here, we have observed resonant light emission peaks with Q-factors of about 180 in room-temperature photoluminescence spectra from uniaxially tensile-strained germanium microbridges. These peaks are found to correspond to the resonance in Fabry-Perot (FP) cavities formed transversely to the uniaxial stress axis. On the basis of this phenomenon, we design a FabryPerot cavity by adding distributed Bragg reflectors (DBRs) laterally to the microbridge. With this design, the optical performance can be optimized without disturbing to the mechanical structure. A Q-factor as high as 1400 is obtained from numerical simulation. Moreover, we prove by theoretical analysis deduction and calculation that the lateral structure will not decrease the strain, unlike the on-pad DBR structure. The structure thus provides a promising solution for the realization of highly strained germanium lasers in the future. (C) 2018 The Japan Society of Applied Physics.
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关键词
resonant light emission,tensile-strained
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