JASMINE image simulator for high-precision astrometry and photometry
Abstract
JASMINE is a Japanese planned space mission that aims to reveal the formation history of our Galaxy and discover habitable exoEarths. For these objectives, the JASMINE satellite performs high-precision astrometric observations of the Galactic bulge and high-precision transit monitoring of M-dwarfs in the near-infrared (1.0-1.6 microns in wavelength). For feasibility studies, we develop an image simulation software named JASMINE-imagesim, which produces realistic observation images. This software takes into account various factors such as the optical point spread function (PSF), telescope jitter caused by the satellite's attitude control error (ACE), detector flat patterns, exposure timing differences between detector pixels, and various noise factors. As an example, we report a simulation for the feasibility study of astrometric observations using JASMINE-imagesim. The simulation confirms that the required position measurement accuracy of 4 mas for a single exposure of 12.5-mag objects is achievable if the telescope pointing jitter uniformly dilutes the PSF across all stars in the field of view. On the other hand, the simulation also demonstrates that the combination of realistic pointing jitter and exposure timing differences in the detector can significantly degrade accuracy and prevent achieving the requirement. This means that certain countermeasures against this issue must be developed. This result implies that this kind of simulation is important for mission planning and advanced developments to realize more realistic simulations help us to identify critical issues and also devise effective solutions.
Keywords
Cite
@article{arxiv.2410.03149,
title = {JASMINE image simulator for high-precision astrometry and photometry},
author = {Takafumi Kamizuka and Hajime Kawahara and Ryou Ohsawa and Hirokazu Kataza and Daisuke Kawata and Yoshiyuki Yamada and Teruyuki Hirano and Kohei Miyakawa and Masataka Aizawa and Masashi Omiya and Taihei Yano and Ryouhei Kano and Takehiko Wada and Wolfgang Löffler and Michael Biermann and Pau Ramos and Naoki Isobe and Fumihiko Usui and Kohei Hattori and Satoshi Yoshioka and Takayuki Tatekawa and Hideyuki Izumiura and Akihiko Fukui and Makoto Miyoshi and Daisuke Tatsumi and Naoteru Gouda},
journal= {arXiv preprint arXiv:2410.03149},
year = {2024}
}
Comments
13 pages, 7 figures, 1 table