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Dual-microcavity narrow-linewidth Brillouin laser

机译:双微腔窄线宽布里渊激光器

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摘要

Ultralow-noise yet tunable lasers are a revolutionary tool in precision spectroscopy, displacement measurements at the standard quantum limit, and the development of advanced optical atomic clocks. Further applications include lidar, coherent communications, frequency synthesis, and precision sensors of strain, motion, and temperature. While all applications benefit from lower frequency noise, many also require a laser that is robust and compact. Here, we introduce a dual-microcavity laser that leverages one chip-integrable silica microresonator to generate tunable 1550 nm laser light via stimulated Brillouin scattering (SBS) and a second microresonator for frequency stabilization of the SBS light. This configuration reduces the fractional frequency noise to 7.8×10^(−14)  1/√Hz at 10 Hz offset, which is a new regime of noise performance for a microresonator-based laser. Our system also features terahertz tunability and the potential for chip-level integration. We demonstrate the utility of our dual-microcavity laser by performing spectral linewidth measurements with hertz-level resolution.
机译:超低噪声但可调谐的激光器是精密光谱学,标准量子极限下的位移测量以及先进的光学原子钟的发展中的革命性工具。其他应用包括激光雷达,相干通信,频率合成以及应变,运动和温度的精密传感器。尽管所有应用都受益于较低频率的噪声,但许多应用还需要坚固耐用的激光器。在这里,我们介绍了一种双微腔激光器,它利用一个可集成芯片的二氧化硅微谐振器通过受激布里渊散射(SBS)产生可调谐的1550 nm激光,以及一个用于使SBS光的频率稳定的第二微谐振器。这种配置将10 Hz偏移下的分数频率噪声降低到7.8×10 ^(− 14)1 /√Hz,这是基于微谐振器的激光器的噪声性能的新机制。我们的系统还具有太赫兹可调性和芯片级集成的潜力。通过执行具有赫兹级分辨率的光谱线宽测量,我们证明了我们的双微腔激光器的实用性。

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