Atmospheric dispersion corrector for a multi-object spectroscopic mode of HROS-TMT

Manjunath Bestha, Amirul Hasan, Devika K. Divakar, A. Surya, S. S, T. Sivarani, Ajin Prakash, P. M, S. Yadav
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Abstract

Highly multiplexed spectroscopic surveys have changed the astronomy landscape in recent years. However, these surveys are limited to low and medium spectral resolution. High spectral resolution spectroscopy is often photon starved and will benefit from a large telescope aperture. Multiplexed high-resolution surveys require a wide field of view and a large aperture for a suitable large number of bright targets. This requirement introduces several practical difficulties, especially for large telescopes, such as the future ELTs. Some of the challenges are the need for a wide field atmospheric dispersion corrector and to deal with the curved non-telecentric focal plane. Here we present a concept of Multi-Object Spectroscopy (MOS) mode for TMT High-Resolution Optical Spectrograph (HROS), where we have designed an atmospheric dispersion corrector for individual objects that fit inside a fiber positioner. We present the ZEMAX design and the performance of the atmospheric dispersion corrector for all elevations accessible by TMT.
HROS-TMT多目标光谱模式的大气色散校正器
近年来,高度复用的光谱调查改变了天文学的格局。然而,这些调查仅限于中低光谱分辨率。高光谱分辨率光谱学往往是光子匮乏,将受益于一个大的望远镜孔径。多路复用高分辨率巡天需要宽视场和大孔径,以适应大量的明亮目标。这一要求带来了一些实际困难,特别是对于大型望远镜,比如未来的elt。其中的一些挑战是需要一个大视场大气色散校正器和处理弯曲的非远心焦平面。在这里,我们提出了用于TMT高分辨率光学光谱仪(HROS)的多目标光谱(MOS)模式的概念,其中我们设计了一个适合光纤定位器内单个物体的大气色散校正器。我们介绍了ZEMAX设计和TMT可到达的所有高度的大气色散校正器的性能。
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