铌酸锂
光子学
纳米光子学
光学
光电子学
非线性光学
光放大器
带宽(计算)
布里渊散射
量子光学
材料科学
物理
光纤
激光器
电信
计算机科学
作者
Luis Ledezma,Ryoto Sekine,Qiushi Guo,Rajveer Nehra,Saman Jahani,Alireza Marandi
出处
期刊:Optica
[The Optical Society]
日期:2022-03-01
卷期号:9 (3): 303-303
被引量:88
标识
DOI:10.1364/optica.442332
摘要
Strong amplification in integrated photonics is one of the most desired optical functionalities for computing, communications, sensing, and quantum information processing. Semiconductor gain and cubic nonlinearities, such as four-wave mixing and stimulated Raman and Brillouin scattering, have been among the most studied amplification mechanisms on chip. Alternatively, material platforms with strong quadratic nonlinearities promise numerous advantages with respect to gain and bandwidth, among which nanophotonic lithium niobate is one of the most promising candidates. Here, we combine quasi-phase matching with dispersion engineering in nanophotonic lithium niobate waveguides and achieve intense optical parametric amplification. We measure a broadband phase-sensitive on-chip amplification larger than 50 dB/cm in a 6-mm-long waveguide. We further confirm high gain operation in the degenerate and nondegenerate regimes by amplifying vacuum fluctuations to macroscopic levels, with on-chip gains exceeding 100 dB/cm over 600 nm of bandwidth around 2 µm. Our results unlock new possibilities for on-chip few-cycle nonlinear optics, mid-infrared photonics, and quantum photonics.
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