论文标题
基于DMD的多对象光谱仪的光学设计和波长校准
Optical Design and Wavelength Calibration of a DMD-based Multi-Object Spectrograph
论文作者
论文摘要
多对象光谱仪(MOS)一直是当前天文光谱仪的基准,其具有同时获取数百个物体光谱的能力而被重视。在过去的二十年中,数字微旋转设备(DMD)已显示出成为MOS的核心组成部分的潜力,被用作可编程的SLIT阵列。我们设计了一个基于观看的DMD的MOS,覆盖了0.4至0.7 $μ$ m的光谱范围,其视野(FOV)为$ 10.5^\ prime \ prime \ times 13.98^\ prime $,光谱分辨率为$ r \ sim1000 $。该DMD-MOS采用全球折射光学元件,体积相全息(VPH)Grism作为高通量的分散元件。在本文中,我们介绍了此DMD-MOS的光学设计和优化过程,以及用于高光谱数据降低的初步波长校准程序。使用DMD-MOS的模拟数据,开发了一种方法来测量高光谱成像失真并在检测器上构建像素到波长映射。对DMD微ror和检测器像素之间的关系进行了研究。该DMD-MOS将被放置在直径为0.5 m的望远镜上,作为对未来基于DMD的MOS系统的探索性研究。
The multi-object spectrograph (MOS) has been the benchmark for the current generation of astronomical spectrographs, valued for its ability to acquire the spectra of hundreds of objects simultaneously. In the last two decades, the digital micromirror device (DMD) has shown potential in becoming the central component of the MOS, being used as a programmable slit array. We have designed a seeing-limited DMD-based MOS covering a spectral range of 0.4 to 0.7 $μ$m, with a field of view (FOV) of $10.5^\prime \times 13.98^\prime$ and a spectral resolution of $R\sim1000$. This DMD-MOS employs all-spherical refractive optics, and a volume phase holographic (VPH) grism as the dispersive element for high throughput. In this paper, we present the optical design and optimization process of this DMD-MOS, as well as a preliminary wavelength calibration procedure for hyperspectral data reduction. Using simulated data of the DMD-MOS, a procedure was developed to measure hyperspectral imaging distortion and to construct pixel-to-wavelength mappings on the detector. An investigation into the relationships between DMD micromirrors and detector pixels was conducted. This DMD-MOS will be placed on a 0.5 m diameter telescope as an exploratory study for future DMD-based MOS systems.