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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >High stability soliton frequency-shifting mechanisms for laser synchronization applications
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High stability soliton frequency-shifting mechanisms for laser synchronization applications

机译:适用于激光同步应用的高稳定性孤子移频机制

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摘要

We analyze frequency-shifting mechanisms in photonic crystal fibers (PCFs). In contrast to the generally used approach of launching pulses in the negative group velocity dispersion (GVD) region of PCFs, we suggest employing a fiber with a higher zero dispersion wavelength that is pumped in the positive GVD region. Results of a numerical optimization reveal that the amplitude stability of the frequency-shifted pulses can be improved by more than 1 order of magnitude and the timing jitter arising from input fluctuations by 2 orders of magnitude by a proper choice of the fiber dispersion. The presented approach and optimization will improve the performance of timing- and amplitude-sensitive applications, such as nonlinear microscopy and spectroscopy or optical synchronization for optical parametric chirped pulse amplification significantly.
机译:我们分析了光子晶体光纤(PCFs)中的频移机制。与通常在PCF的负组速度色散(GVD)区域中发射脉冲的方法相反,我们建议使用泵浦在正GVD区域中具有较高零色散波长的光纤。数值优化的结果表明,通过适当选择光纤色散,可以将移频脉冲的幅度稳定性提高1个数量级以上,并且由输入波动引起的时序抖动可以提高2个数量级。提出的方法和优化将改善对时序和幅度敏感的应用程序的性能,例如非线性显微镜和光谱学或用于光学参量pulse脉冲放大的光学同步。

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