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Frequency comb assisted diode laser spectroscopy for measurement of microcavity dispersion

机译:频率梳辅助二极管激光光谱法测量微腔色散

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摘要

Although invented for precision measurements of single atomic transitions, frequency combs have also become a versatile tool for broadband spectroscopy in recent years. Here, we present a novel and simple approach for broadband spectroscopy, combining the accuracy of an optical fibre-laser-based frequency comb with the ease of use of a tunable external cavity diode laser. The scheme enables broadband and fast spectroscopy of more than 4 THz bandwidth at scanning speeds up to 1 THz s(-1) at sub-MHz resolution. We use this method for spectroscopy of microresonator modes and precise measurements of their dispersion, which is relevant in the context of broadband optical frequency comb generation, having recently been demonstrated in these devices. Moreover, we find excellent agreement between measured microresonator dispersion with predicted values from finite element simulations, and we show that microresonator dispersion can be tailored by adjusting their geometrical properties.
机译:尽管是为精确测量单个原子跃迁而发明的,但近年来,频率梳也已成为宽带光谱学的通用工具。在这里,我们提出了一种新颖,简单的宽带光谱方法,将基于光纤激光器的频率梳的精度与可调谐外腔二极管激光器的易用性相结合。该方案可在亚MHz分辨率下以高达1 THz s(-1)的扫描速度实现超过4 THz带宽的宽带和快速光谱。我们将这种方法用于微谐振器模式的光谱学以及它们的色散的精确测量,这在宽带光频率梳的产生中非常重要,最近在这些设备中得到了证明。此外,我们发现测得的微谐振器色散与有限元模拟的预测值之间具有极好的一致性,并且我们表明微谐振器色散可以通过调整其几何特性进行定制。

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