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基于异质III-V族/硅激光器的超精密光频稳定

Ultra-precise optical-frequency stabilization with heterogeneous III-V/Si lasers.

作者信息

Stern Liron, Zhang Wei, Chang Lin, Guo Joel, Xiang Chao, Tran Minh A, Huang Duanni, Peters Jonathan D, Kinghorn David, Bowers John E, Papp Scott B

出版信息

Opt Lett. 2020 Sep 15;45(18):5275-5278. doi: 10.1364/OL.398845.

Abstract

The demand for low-noise, continuous-wave, frequency-tunable lasers based on semiconductor integrated photonics has advanced in support of numerous applications. In particular, an important goal is to achieve a narrow spectral linewidth, commensurate with bulk-optic or fiber-optic laser platforms. Here we report on laser-frequency-stabilization experiments with a heterogeneously integrated III/V-Si widely tunable laser and a high-finesse, thermal-noise-limited photonic resonator. This hybrid architecture offers a chip-scale optical-frequency reference with an integrated linewidth of 60 Hz and a fractional frequency stability of 2.5×10 at 1 s integration time. We explore the potential for stabilization with respect to a resonator with lower thermal noise by characterizing laser-noise contributions such as residual amplitude modulation and photodetection noise. Widely tunable, compact and integrated, cost-effective, stable, and narrow-linewidth lasers are envisioned for use in various fields, including communication, spectroscopy, and metrology.

摘要

基于半导体集成光子学的低噪声、连续波、频率可调谐激光器的需求不断增长,以支持众多应用。特别是,一个重要目标是实现与体光学或光纤激光平台相当的窄光谱线宽。在此,我们报告了使用异质集成的III/V-Si宽可调谐激光器和高精细度、热噪声限制光子谐振器进行激光频率稳定实验的结果。这种混合架构提供了一种芯片级光学频率参考,其集成线宽为60 Hz,在1 s积分时间下的分数频率稳定性为2.5×10 。我们通过表征诸如残余幅度调制和光电探测噪声等激光噪声贡献,探索了相对于具有更低热噪声的谐振器进行稳定的潜力。人们设想,广泛可调谐、紧凑且集成、经济高效、稳定且窄线宽的激光器可用于通信、光谱学和计量学等各个领域。

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