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迈向氮化硅中的集成同步泵浦光学参量振荡器。

Toward integrated synchronously pumped optical parametric oscillators in silicon nitride.

作者信息

Lüpken Niklas M, Becker David, Würthwein Thomas, Boller Klaus-J, Fallnich Carsten

出版信息

Opt Express. 2021 Nov 22;29(24):39895-39903. doi: 10.1364/OE.438910.

Abstract

We present a tunable, hybrid waveguide-fiber optical parametric oscillator (OPO) synchronously pumped by an ultra-fast fiber laser exploiting four-wave mixing (FWM) generated in silicon nitride waveguides. Parametric oscillation results in a 35 dB enhancement of the idler spectral power density in comparison to spontaneous FWM, with the ability of wide wavelength tuning over 86 nm in the O-band. Measurements of the oscillation threshold and the efficiency of the feedback loop reveal how an integration of the OPO on a single silicon nitride chip can be accomplished at standard repetition rates of pump lasers in the order of 100 MHz.

摘要

我们展示了一种由超快光纤激光器同步泵浦的可调谐混合波导 - 光纤光学参量振荡器(OPO),该振荡器利用氮化硅波导中产生的四波混频(FWM)。与自发四波混频相比,参量振荡使闲频光光谱功率密度提高了35 dB,并且能够在O波段实现超过86 nm的宽波长调谐。对振荡阈值和反馈回路效率的测量揭示了如何在泵浦激光器约100 MHz的标准重复频率下,将光学参量振荡器集成在单个氮化硅芯片上。

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