光电子学
谐振器
材料科学
连贯性(哲学赌博策略)
硅
半导体
相干长度
激光器
光学
氮化硅
物理
量子力学
超导电性
作者
Bohan Li,Zhiquan Yuan,Warren Jin,Lue Wu,Joel Guo,Qing-Xin Ji,Avi Feshali,Mario Paniccia,John E. Bowers,Kerry J. Vahala
出处
期刊:Optica
[Optica Publishing Group]
日期:2023-09-19
卷期号:10 (9): 1241-1241
标识
DOI:10.1364/optica.498391
摘要
Visible, high-coherence optical sources are important to a wide range of applications spanning spectroscopy to precision timing. Integration of these sources on a semiconductor chip is a necessary step if the systems that use these devices are to be made compact, portable, and low power. Here, by self-injection-locking a 1560 nm distributed feedback semiconductor laser to a high-Q silicon-nitride resonator, a high-coherence 780 nm second-harmonic signal is generated via the photogalvanic-induced second-order nonlinearity. A record-low frequency noise floor of 4Hz 2 /Hz is achieved for the 780 nm emission. The approach can potentially generate signals over a wide range of visible and near-visible bands, and thereby help transition many table-top systems into a fieldable form.
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