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Development of a stabilized Fabry-Perot based wavelength calibrator for precision Doppler spectroscopy

机译:稳定的基于Fabry-Perot的波长校准器的开发,用于精密多普勒光谱

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Precision Doppler spectroscopy serves as an important tool for Radial Velocity (RV) observations of stars. High precision spectroscopy is bound by two major challenges, first being the instrument instability which is mainly caused by temperature and pressure variations and second, the limitations imposed by traditional wavelength calibration methods. In this work we report our progress on the development of a passively stabilized Fabry-Perot (FP) calibrator. We have designed and built an air-spaced etalon with 30 GHz free spectral range for accurately tracking the short-term drift of our high resolution (R = 60,000) Echelle spectrograph on Himalayan Chandra Telescope (HCT), Hanle. Instrument is built using off-the-shelf components, with the required temperature and pressure stability being achieved in initial test runs. For transporting light in and out of the vacuum system without incurring losses at fiber interconnects, we have used a simple way to insert a FC/APC connectorized fiber into the flange. We also present the results of transmission spectra of the FP taken with high resolution Fourier Transform Spectrometer.
机译:精密多普勒光谱仪是恒星径向速度(RV)观测的重要工具。高精度光谱法面临两个主要挑战,首先是仪器不稳定,这主要是由温度和压力变化引起的,其次是传统波长校准方法带来的局限性。在这项工作中,我们报告了在开发被动稳定的Fabry-Perot(FP)校准器方面的进展。我们设计并构建了具有30 GHz自由光谱范围的空标准具,以精确跟踪汉乐喜马拉雅Chandra望远镜(HCT)上高分辨率(R = 60,000)Echelle光谱仪的短期漂移。仪器是使用现成的组件制造的,在最初的测试运行中达到了所需的温度和压力稳定性。为了将光进出真空系统而又不会在光纤互连上造成损失,我们使用了一种简单的方法将FC / APC连接的光纤插入法兰。我们还介绍了用高分辨率傅立叶变换光谱仪拍摄的FP透射光谱的结果。

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