论文标题
骨干 - 枯燥的模型。准确地表征纤维馈送的梯形光谱仪的仪器剖面
The backbone-residual model. Accurately characterising the instrumental profile of a fibre-fed echelle spectrograph
论文作者
论文摘要
上下文:仪器配置文件(IP)是光谱仪的基本属性。准确的IP表征是精确波长解决方案的先决条件。它还促进了新的光谱采集方法,例如正向建模和反卷积。目的:我们研究了一种带有Thar灯的发射线的纤维馈送梯形光谱仪的IP建模方法,并探索评估IP表征准确性的方法。方法:在中国Xinglong 2.16-m望远镜处提出并测试了骨干 - 残基(BR)模型,这是主链函数的总和和残留功能。骨干函数是描述IP的主组件和空间变化的钟形函数。剩余函数表示为立方样条函数,解释了钟形函数和实际IP之间的差异。评估IP表征准确性的方法基于光谱重建和蒙特卡洛模拟。结果:HR的IP以BR模型为特征,并且表征IP的精度达到了主链函数峰值的0.006。该结果表明,使用BR模型在HRS上实现了准确的IP表征,而BR模型是精确的IP表征的绝佳选择。
Context: Instrumental profile (IP) is the basic property of a spectrograph. Accurate IP characterisation is the prerequisite of accurate wavelength solution. It also facilitates new spectral acquisition methods such as the forward modeling and deconvolution. Aims: We investigate an IP modeling method for the fibre-fed echelle spectrograph with the emission lines of the ThAr lamp, and explore the method to evaluate the accuracy of IP characterisation. Methods: The backbone-residual (BR) model is put forward and tested on the fibre-fed High Resolution Spectrograph (HRS) at the Chinese Xinglong 2.16-m Telescope, which is the sum of the backbone function and the residual function. The backbone function is a bell-shaped function to describe the main component and the spatial variation of IP. The residual function, which is expressed as the cubic spline function, accounts for the difference between the bell-shaped function and the actual IP. The method of evaluating the accuracy of IP characterisation is based on the spectral reconstruction and Monte Carlo simulation. Results: The IP of HRS is characterised with the BR model, and the accuracy of the characterised IP reaches 0.006 of the peak value of the backbone function. This result demonstrates that the accurate IP characterisation has been achieved on HRS with the BR model, and the BR model is an excellent choice for accurate IP characterisation of fibre-fed echelle spectrographs.