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Generation of multiple ultrastable optical frequency combs from an all-fiber photonic platform

机译:从全光纤光子平台产生多种无限光学频率梳理

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摘要

Frequency-stabilized optical frequency combs have created many high-precision applications. Accurate timing, ultralow phase noise, and narrow linewidth are prerequisites for achieving the ultimate performance of comb-based systems. Ultrastable cavity-based comb-noise stabilization methods have enabled sub–10sup?15/sup-level frequency instability. However, these methods are complex and alignment sensitive, and their use has been mostly confined to advanced metrology laboratories. Here, we have established a simple, compact, alignment-free, and potentially low-cost all-fiber photonics-based stabilization method for generating multiple ultrastable combs. The achieved performance includes 1-femtosecond timing jitter, few times 10sup?15/sup-level frequency instability, and 5-hertz linewidth, rivalling those of cavity-stabilized combs. This method features flexibility in configuration: As a representative example, two combs were stabilized with 180-hertz repetition rate difference and ~1-hertz relative linewidth and could be used as an ultrastable, octave-spanning dual-comb spectroscopy source. The demonstrated method constitutes a mechanically robust and reconfigurable tool for generating multiple ultrastable combs suitable for field applications.
机译:频率稳定的光学频率梳理已创建许多高精度应用。准确的时序,超级相位噪声和窄线宽是实现基于梳理系统的最终性能的先决条件。超吸腔的抗噪声稳定方法使能SUS-10 ?15 -level频率不稳定性。然而,这些方法是复杂的和对准敏感,它们的使用主要被限制在高级计量实验室。在这里,我们建立了一种简单,紧凑,对齐的,潜在的低成本全纤维光子学的稳定方法,用于产生多个无塑料梳子。所实现的性能包括1-Femtosecond时序抖动,几次10 Δ15 -level频率不稳定性,以及<5-hertz线宽,媲美腔稳定的梳子。该方法在配置中具有灵活性:作为代表性示例,使用180赫兹重复率差和〜1-Hertz相对宽线宽稳定两个梳子,并可用作超速度,八度跨越双梳谱源。说明的方法构成了机械稳健和可重新配置的工具,用于产生适合于现场应用的多个无塑性梳理。

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