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CW-pumped single-pass frequency comb generation by resonant optomechanical nonlinearity in dual-nanoweb fiber

机译:双纳米纤维谐振光机械非线性CW泵浦单通频率梳理

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摘要

Recent experiments in the field of strong optomechanical interactions have focused on either structures that are simultaneously optically and mechanically resonant, or photonic crystal fibers pumped by a laser intensity modulated at a mechanical resonant frequency of the glass core. Here, we report continuous-wave (CW) pumped self-oscillations of a fiber nanostructure that is only mechanically resonant. Since the mechanism has close similarities to stimulated Raman scattering by molecules, it has been named stimulated Raman-like scattering. The structure consists of two submicrometer thick glass membranes (nanowebs), spaced by a few hundred nanometers and supported inside a 12-cm-long capillary fiber. It is driven into oscillation by a CW pump laser at powers as low as a few milliwatts. As the pump power is increased above threshold, a comb of Stokes and anti-Stokes lines is generated, spaced by the oscillator frequency of similar to 6 MHz. An unprecedentedly high Raman-like gain of similar to 4 x 10(6) m(-1) W-1 is inferred after analysis of the experimental data. Resonant frequencies as high as a few hundred megahertz are possible through the use of thicker and less-wide webs, suggesting that the structure can find application in passive mode-locking of fiber lasers, optical frequency metrology, and spectroscopy. (C) 2014 Optical Society of America
机译:强光机构相互作用领域的最近实验集中在同时光学和机械谐振的任一结构上,或者通过在玻璃芯的机械谐振频率下调制的激光强度泵浦的光子晶体纤维。在这里,我们报告纤维纳米结构的连续波(CW)泵浦自振荡仅是机械共振的纤维纳米结构。由于该机制与分子刺激的拉曼散射具有近似的相似性,因此它已被命名为刺激的拉曼样散射。该结构由两个亚型厚玻璃膜(Nanowebeb)组成,由几百纳米间隔开并支撑在12厘米长的毛细纤维内。由CW泵激光器以低至几毫瓦的功率驱动振荡。随着泵功率增加到高于阈值,斯托克斯和防斯托克斯线的梳子被产生,由振荡器频率间隔,类似于6 MHz。在分析实验数据之后推断出类似于4×10(6)米(-1)W-1的前所未有的高拉曼增益。通过使用较厚和宽宽的纤维网可以实现高达几百Megahertz的共振频率,这表明该结构可以在无源模式锁定光纤激光器,光学频率计量和光谱中的应用。 (c)2014年光学学会

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