The Circumgalactic H$\alpha$ Spectrograph (CH$\alpha$S) I. Design, Engineering, and Early Commissioning
Abstract
The Circumgalactic H Spectrograph (CHS) is a ground-based optical integral field spectrograph designed to detect ultra-faint extended emission from diffuse ionized gas in the nearby universe. CHS is particularly well suited for making a direct detection of tenuous H emission from the circumgalactic medium (CGM) surrounding low-redshift galaxies. It efficiently maps large regions of the CGM in a single exposure, targeting nearby galaxies (d Mpc) where the CGM is expected to fill the field of view. We are commissioning CHS as a facility instrument at MDM Observatory. CHS is deployed in the focal plane of the Hiltner 2.4-meter telescope, utilizing nearly all of the telescope's unvignetted focal plane (10 arcmin) to conduct wide-field spectroscopic imaging. The catadioptric design provides excellent wide-field imaging performance. CHS is a pupil-imaging spectrograph employing a microlens array to divide the field of view into spectra. CHS achieves an angular resolution of arcseconds and a resolving power of R. Accordingly, the spectrograph can resolve structure on the scale of kpc (at 10 Mpc) and measure velocities down to 15-30 km/s. CHS intentionally operates over a narrow (30 Angstrom) bandpass; however, it is configured to adjust the central wavelength and target a broad range of optical emission lines individually. A high diffraction efficiency VPH grating ensures high throughput across configurations. CHS maintains a high grasp and moderate spectral resolution, providing an ideal combination for mapping discrete, ultra-low surface brightness emission on the order of a few milli-Raleigh.
Keywords
Cite
@article{arxiv.2209.14999,
title = {The Circumgalactic H$\alpha$ Spectrograph (CH$\alpha$S) I. Design, Engineering, and Early Commissioning},
author = {Nicole Melso and David Schiminovich and Brian Smiley and Hwei Ru Ong and Bárbara Cruvinel Santiago and Meghna Sitaram and Ignacio Cevallos Aleman and Sarah Graber and Marisa Murillo and Marni Rosenthal and Ioana Stelea},
journal= {arXiv preprint arXiv:2209.14999},
year = {2023}
}
Comments
25 pages, 14 figures, 7 tables, Accepted for publication in ApJ