论文标题
Hertz-lineWidth半导体激光器使用CMOS Ready Ultra-High-$ Q $微孔子
Hertz-linewidth semiconductor lasers using CMOS-ready ultra-high-$Q$ microresonators
论文作者
论文摘要
在狭窄的台式台面激光器的驱动下,跨越光学通信,计量和传感的连贯的光学系统提供了无与伦比的性能。为了将这些能力从实验室转移到现实世界中,缺少的主要成分是一种大量生产的集成激光器,具有卓越的连贯性。在这里,我们使用CMOS-Intry-Farry-Babricated微孔子的传统半导体激光器和连贯的光学系统桥梁,具有创纪录的高$ Q $ k $ 2.6亿美元,超过42,000。在泵激光器中降低了五种降低质量噪声,并且首次在1 Hz $^2 $ hz $^{ - 1} $的基本噪声中获得了电动泵的集成激光器。此外,证明相同的配置可缓解残障某些非线性平台的微型栓生成的分散要求。使用基于Foundry的Technologies铺平了多种相干光学系统的批量制造的道路,同时实现了创纪录的$ Q $ k $ Q $ kum,高度连贯的激光和频率梳子。
Driven by narrow-linewidth bench-top lasers, coherent optical systems spanning optical communications, metrology and sensing provide unrivalled performance. To transfer these capabilities from the laboratory to the real world, a key missing ingredient is a mass-produced integrated laser with superior coherence. Here, we bridge conventional semiconductor lasers and coherent optical systems using CMOS-foundry-fabricated microresonators with record high $Q$ factor over 260 million and finesse over 42,000. Five orders-of-magnitude noise reduction in the pump laser is demonstrated, and for the first time, fundamental noise below 1 Hz$^2$ Hz$^{-1}$ is achieved in an electrically-pumped integrated laser. Moreover, the same configuration is shown to relieve dispersion requirements for microcomb generation that have handicapped certain nonlinear platforms. The simultaneous realization of record-high $Q$ factor, highly coherent lasers and frequency combs using foundry-based technologies paves the way for volume manufacturing of a wide range of coherent optical systems.