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Design of optical frequency comb for sky survey astronomical spectrograph calibration

机译:天文观测天文光谱仪校准用光学频率梳的设计

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Sky survey telescope is an important approach to ground-based observation of external galaxies, and further research on large-scale structure of the universe, galaxy formation and evolution. Sky survey spectrograph (SSS) with low resolution is included in such kind of telescope system. The spectral measurement accuracy of SSS will determine the accuracy and scientific value of mass spectral data. Currently iodine absorption cell or Thorium-Argon lamp is adopted as the calibration source for SSS. However, the spectral lines are sparse, with non-uniform spectral interval and intensity, and even instable over long time. The novel astro-comb cannot be applied to SSS directly because the spectral intervals are still too dense to be used in SSS with relatively lower resolution. In this paper, spectral mode filtering method with acceptable energy reduction and accurate spectral line frequency is studied to improve current astro-comb to properly distributed spectral lines and solve the above critical problem. Aiming at calibration for the measuring of the spectral lines in 3700-5900 A region, we design an improved astro-comb system based on Erbium-doped fiber laser and Fabry-Perot filter series. Feasible systematical parameters are given. It will help develop a novel calibration approach with systematic error reduction to less than 1/10000 of that of the current calibration methods.
机译:天文望远镜是对外部星系进行地面观测的重要方法,它是进一步研究宇宙的大规模结构,星系形成和演化的重要方法。这种望远镜系统包括低分辨率的天文观测光谱仪(SSS)。 SSS的光谱测量精度将决定质谱数据的准确性和科学价值。目前,采用碘吸收池或ium氩灯作为SSS的校准源。然而,光谱线稀疏,具有不均匀的光谱间隔和强度,甚至长期不稳定。新型的天体梳不能直接应用于SSS,因为频谱间隔仍然太密而无法在分辨率相对较低的SSS中使用。本文研究了一种能量减少可接受且频谱线频率准确的频谱模式滤波方法,以改善当前的天体梳状结构,使频谱线分布合理,从而解决上述关键问题。为了校准3700-5900 A区域光谱线的测量,我们设计了一种基于掺Er光纤激光器和Fabry-Perot滤光片系列的改进型天体梳系统。给出了可行的系统参数。这将有助于开发一种新颖的校准方法,将系统误差降低到当前校准方法的1/10000以下。

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