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Demonstration of a near-IR line-referenced electro-optical laser frequency comb for precision radial velocity measurements in astronomy

机译:演示用于天文学中精确径向速度测量的近红外线参考电光激光频率梳

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An important technique for discovering and characterizing planets beyond our solar system relies upon measurement of weak Doppler shifts in the spectra of host stars induced by the influence of orbiting planets. A recent advance has been the introduction of optical frequency combs as frequency references. Frequency combs produce a series of equally spaced reference frequencies and they offer extreme accuracy and spectral grasp that can potentially revolutionize exoplanet detection. Here we demonstrate a laser frequency comb using an alternate comb generation method based on electro-optical modulation, with the comb centre wavelength stabilized to a molecular or atomic reference. In contrast to mode-locked combs, the line spacing is readily resolvable using typical astronomical grating spectrographs. Built using commercial off-the-shelf components, the instrument is relatively simple and reliable. Proof of concept experiments operated at near-infrared wavelengths were carried out at the NASA Infrared Telescope Facility and the Keck-II telescope.
机译:在我们的太阳系之外发现和表征行星的一项重要技术,是依靠测量由绕行星运行引起的主恒星光谱中的微弱多普勒频移。最近的进步是引入光学频率梳作为频率参考。频率梳产生一系列等距的参考频率,它们提供了极高的精度和频谱掌握能力,可能会改变系外行星的探测。在这里,我们演示了使用基于电光调制的备用梳状波产生方法的激光频率梳状波,其梳状波的中心波长稳定在分子或原子基准上。与锁模梳相比,使用典型的天文光栅光谱仪可以轻松解决线距问题。该仪器使用现成的商用组件构建,相对简单可靠。在NASA红外望远镜设施和Keck-II望远镜上进行了在近红外波长下进行的概念验证实验。

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