Liang W, Ilchenko V S, Eliyahu D, Savchenkov A A, Matsko A B, Seidel D, Maleki L
OEwaves Inc., 465 North Halstead Street, Suite 140, Pasadena, California 91107, USA.
Nat Commun. 2015 Jun 24;6:7371. doi: 10.1038/ncomms8371.
Advanced applications in optical metrology demand improved lasers with high spectral purity, in form factors that are small and insensitive to environmental perturbations. While laboratory-scale lasers with extraordinarily high stability and low noise have been reported, all-integrated chip-scale devices with sub-100 Hz linewidth have not been previously demonstrated. Lasers integrated with optical microresonators as external cavities have the potential for substantial reduction of noise. However, stability and spectral purity improvements of these lasers have only been validated with rack-mounted support equipment, assembled with fibre lasers to marginally improve their noise performance. In this work we report on a realization of a heterogeneously integrated, chip-scale semiconductor laser featuring 30-Hz integral linewidth as well as sub-Hz instantaneous linewidth.
光学计量学中的先进应用需要改进的激光器,这些激光器要具有高光谱纯度,外形小巧且对环境扰动不敏感。虽然已经报道了具有极高稳定性和低噪声的实验室规模激光器,但此前尚未展示过线宽低于100 Hz的全集成芯片级器件。与光学微谐振器集成作为外腔的激光器具有大幅降低噪声的潜力。然而,这些激光器的稳定性和光谱纯度改进仅通过机架安装的支持设备得到验证,这些设备与光纤激光器组装在一起,只能略微改善其噪声性能。在这项工作中,我们报告了一种异质集成的芯片级半导体激光器的实现,其积分线宽为30 Hz,瞬时线宽为亚赫兹。