汉勒梯队光谱仪稳定法布里-珀罗标准隆校准器的研制

Tanya Das, Ravinder K.Banyal, T. Sivarani, B. Ravindra
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引用次数: 5

摘要

准确的波长校准是任何高分辨率光谱仪测量的重要因素。恒星光谱由离散的吸收线或发射线组成,其位置是通过使用实验室源生成的已知参考线校准光谱仪精确确定的。为了使摄谱仪测量多普勒频移的微小变化,波长校准必须在观测期间足够稳定。仪器的不稳定性,主要是由于环境因素,如温度和压力的变化,传统的校准方法,如钍氩灯的局限性,是高精度光谱学的主要挑战。通过适当的环境控制,将压力保持在几毫巴,温度波动在$\pm$0.05$ {\circ}$C内,法布里·珀罗标准龙(FP)在用于波长校准时可以产生1-10米/秒的速度精度。为安装在印度汉勒天文台喜马拉雅钱德拉望远镜(HCT)上的汉勒梯队光谱仪(HESP)研制了一种被动稳定FP波长校准器。用傅立叶变换光谱仪(FTS)对其进行了表征,并用HESP进行了初步测试。在本文中,我们介绍了仪器的设计和结构以及从HESP获得的初步测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a stabilized Fabry–Perot etalonbased calibrator for Hanle echelle spectrograph
Accurate wavelength calibration is an important factor for any measurement with high resolution spectrographs. Stellar spectrum comprises of discrete absorption or emission lines whose position is precisely determined by calibrating the spectrograph using known reference lines generated from laboratory sources. For the spectrograph to measure small variations in Doppler shift, the wavelength calibration must be sufficiently stable during observation time. Instrument instability, mainly due to environmental factors like temperature and pressure variations, limitations of traditional calibration methods, for example Th-Ar lamps, are the main challenges which high precision spectroscopy. Through proper environmental control, by maintaining pressure at few mbar and temperature fluctuations within $\pm$0.05$^{\circ}$C, Fabry Perot etalon (FP) can yield a velocity precision of 1-10 m/s, when used for wavelength calibration. We have developed a passively stabilized FP based wavelength calibrator for Hanle Echelle Spectrograph (HESP) installed on Himalayan Chandra Telescope (HCT) at Indian Astronomical Observatory (IAO), Hanle, India. The etalon has been characterized using Fourier Transform Spectrograph (FTS) and initial test runs have been performed with HESP. In this paper we present the design and construction of the instrument along with preliminary test results obtained from HESP.
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