论文标题

宽带宽Fabry-Perot干涉仪模式频谱的频率稳定性

Frequency stability of the mode spectrum of broad bandwidth Fabry-Perot interferometers

论文作者

Jennings, Jeff, Terrien, Ryan, Fredrick, Connor, Grisham, Michael, Notcutt, Mark, Halverson, Samuel, Mahadevan, Suvrath, Diddams, Scott A.

论文摘要

当用白光源照亮时,Fabry-Perot干涉仪(FP)的离散共振提供了宽带的带宽,梳状光谱,可用于频率校准。我们报告了两个平面的设计,施工和实验室表征,被动稳定,低技能(〜40)FPS(跨380 nm至930 nm和780 nm至1300 nm),分别为20 GHz和30 GHz。这些仪器旨在校准径向速度搜索的天文光谱图。通过跟踪每个FP中三个广泛分离的共振的频率漂移,我们测量的分数漂移速率低至1 x 10^(-10) /天。但是,我们发现分数漂移速率在三个样品波长的情况下有所不同,因此,给定的两个共振模式的漂移与其模式数的比率不同意。我们探讨了这种行为的可能原因,并量化了FPS的温度和光功率灵敏度。我们的结果表明,Fabry-Perot干涉仪作为天文学和其他宽带宽度光谱应用的稳健且频率稳定的校准器的进步,但也突出了对这些系统的色度表征的需求。

When illuminated by a white light source, the discrete resonances of a Fabry-Perot interferometer (FP) provide a broad bandwidth, comb-like spectrum useful for frequency calibration. We report on the design, construction and laboratory characterization of two planar, passively stabilized, low finesse (~40) FPs spanning 380 nm to 930 nm and 780 nm to 1300 nm, with nominal free spectral ranges of 20 GHz and 30 GHz respectively. These instruments are intended to calibrate astronomical spectrographs in radial velocity searches for extrasolar planets. By tracking the frequency drift of three widely-separated resonances in each FP we measure fractional frequency drift rates as low as 1 x 10^(-10) / day. However we find that the fractional drift rate varies across the three sample wavelengths, such that the drift of two given resonance modes disagrees with the ratio of their mode numbers. We explore possible causes of this behavior, as well as quantify the temperature and optical power sensitivity of the FPs. Our results demonstrate the advancement of Fabry-Perot interferometers as robust and frequency-stable calibrators for astronomical and other broad bandwidth spectroscopy applications, but also highlight the need for chromatic characterization of these systems.

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