论文标题
具有异质III-V/SI激光器的超频频稳定
Ultraprecise optical-frequency stabilization with heterogeneous III-V/Si lasers
论文作者
论文摘要
基于半导体集成光子学的低噪声,连续波,可感应激光的需求一直在支持众多应用。特别是,一个重要的目标是实现狭窄的光谱线宽,与散装或光纤激光平台相称。在这里,我们报告了具有异质整合的III/V-SI可调激光和高效的,热噪声限制的光子谐振器的激光频率稳定实验。该混合体系结构提供了芯片尺度的光频参考,其集成线宽为60 Hz,在1秒集成时间时,分数频率稳定性为2.5E-13。我们通过表征激光噪声贡献(例如残留振幅调制和光电检测噪声)来探索具有较低热噪声的谐振器的稳定潜力。设想在各个领域(包括通信,光谱和计量学)中使用广泛可调,紧凑和集成,具有成本效益,稳定和狭窄的线宽激光器。
Demand for low-noise, continuous-wave, frequency-tunable lasers based on semiconductor integrated photonics has been advancing in support of numerous applications. In particular, an important goal is to achieve 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 2.5e-13 at 1-second 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.