"Slow-Scanning" in Ground-Based Mid-Infrared Observation
Abstract
Chopping observations with a tip-tilt secondary mirror have conventionally been used in ground-based mid-infrared observations. However, it is not practical for next generation large telescopes to have a large tip-tilt mirror that moves at a frequency larger than a few Hz. We propose an alternative observing method, a "slow-scanning" observation. Images are continuously captured as movie data, while the field-of-view is slowly moved. The signal from an astronomical object is extracted from the movie data by a low-rank and sparse matrix decomposition. The performance of the "slow-scanning" observation was tested in an experimental observation with Subaru/COMICS. The quality of a resultant image in the "slow-scanning" observation was as good as in a conventional chopping observation with COMICS, at least for a bright point-source object. The observational efficiency in the "slow-scanning" observation was better than that in the chopping observation. The results suggest that the "slow-scanning" observation can be a competitive method for the Subaru telescope and be of potential interest to other ground-based facilities to avoid chopping.
Keywords
Cite
@article{arxiv.1804.04271,
title = {"Slow-Scanning" in Ground-Based Mid-Infrared Observation},
author = {Ryou Ohsawa and Shigeyuki Sako and Takashi Miyata and Takafumi Kamizuka and Kazushi Okada and Kiyoshi Mori and Masahito S. Uchiyama and Junpei Yamaguchi and Takuya Fujiyoshi and Mikio Morii and Shiro Ikeda},
journal= {arXiv preprint arXiv:1804.04271},
year = {2018}
}
Comments
20 pages, 11 figures