Continuous-wave microcavity quantum cascade lasers in whispering-gallery modes up to 50 °C

Author:

Guo Qiangqiang12,Zhang Jinchuan12,Yin Ran12,Zhuo Ning1,Lu Quanyong3,Zhai Shenqiang1,Liu Junqi12ORCID,Wang Lijun12,Liu Shuman12ORCID,Liu Fengqi12

Affiliation:

1. Chinese Academy of Sciences

2. University of Chinese Academy of Sciences

3. Beijing Academy of Quantum Information Sciences

Abstract

Micro-resonator-based lasers are well suited for high-density optoelectronic integration because of their small volumes and low thresholds. However, microcavity quantum cascade lasers for on-chip sensing have high thermal loads that make continuous-wave operation challenging. In this work, we designed an selective thermal dissipation scheme for the selective electrical isolation process to improve the thermal conductivity of the devices. The lasers operated at 50 °C, with 4.7-µm emission. They were fabricated as a notched elliptical resonator, resulting in a highly unidirectional far-field profile with an in-plane beam divergence of 1.9°. Overall, these directional-emission quantum cascade lasers pave the way for portable and highly integrated sensing applications.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Beijing Municipal Science and Technology Commission

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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