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Generation of a phase-locked Raman frequency comb in gas-filled hollow-core photonic crystal fiber

机译:充气中空光子晶体光纤中锁相拉曼频率梳的产生

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摘要

In a relatively simple setup consisting of a microchip laser as pump source and two hydrogen-filled hollow-core photonic crystal fibers, a broad, phase-locked, purely rotational frequency comb is generated. This is achieved by producing a clean first Stokes seed pulse in a narrowband guiding photonic bandgap fiber via stimulated Raman scattering and then driving the same Raman transition resonantly with a pump and Stokes fields in a second broadband guiding kagome-style fiber. Using a spectral interferometric technique based on sum frequency generation, we show that the comb components are phase locked.
机译:在一个相对简单的设置中,由作为泵浦源的微芯片激光器和两条氢填充的空心光子晶体光纤组成,产生了宽的,锁相的,纯旋转的频率梳。这是通过在窄带引导光子带隙光纤中通过受激拉曼散射产生干净的第一斯托克斯种子脉冲,然后在第二宽带导引kagome型光纤中利用泵浦和斯托克斯场共振驱动同一拉曼跃迁来实现的。使用基于和频产生的频谱干涉技术,我们表明梳状分量是锁相的。

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