Above 20 GHz high frequency operation of mid-infrared doughnut-shaped microcavity quantum cascade lasers

Author:

Gao Xu12,Guo Qiangqiang23,Yang Ke23,Zhai Shenqiang23,Zhuo Ning23,Li Yuan23,Zhang Jinchuan23ORCID,Wang Lijun23,Liu Shuman23ORCID,Liu Fengqi23,Wang Xiaohua1,Wei Zhipeng1,Liu Junqi23ORCID

Affiliation:

1. Changchun University of Science and Technology

2. Chinese Academy of Sciences

3. University of Chinese Academy of Sciences

Abstract

Microresonator-based high-speed single-mode quantum cascade lasers are ideal candidates for on-chip optical data interconnection and high sensitivity gas sensing in the mid-infrared spectral range. In this paper, we propose a high frequency operation of single-mode doughnut-shaped microcavity quantum cascade laser at ∼4.6 µm. By leveraging compact micro-ring resonators and integrating with grounded coplanar waveguide transmission lines, we have greatly reduced the parasitics originating from both the device and wire bonding. In addition, a selective heat dissipation scheme was introduced to improve the thermal characteristics of the device by semi-insulating InP infill regrowth. The highest continuous wave operating temperature of the device reaches 288 K. A maximum −3 dB bandwidth of 11 GHz and a cut-off frequency exceeding 20 GHz in a microwave rectification technique are obtained. Benefiting from the notch at the short axis of the microcavity resonator, a highly customized far-field profile with an in-plane beam divergence angle of 2.4° is achieved.

Funder

National Basic Research Program of China

National Natural Science Foundation of China

Key Program of the Chinese Academy of Sciences

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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