K-DRIFT Science Theme: Galactic Cirrus Clouds and Circumgalactic Medium

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Seon, Kwang-il, Lee, Jaehyun, Ko, Jongwan, Byun, Woowon, Yoo, Jaewon, Chun, Kyungwon, Chun, Sang-Hyun, Hong, Sungryong, Kim, Jae-Woo, Park, Hong Soo, Shin, Jihye
Format: Preprint
Published: 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866917217109540864
author Seon, Kwang-il
Lee, Jaehyun
Ko, Jongwan
Byun, Woowon
Yoo, Jaewon
Chun, Kyungwon
Chun, Sang-Hyun
Hong, Sungryong
Kim, Jae-Woo
Park, Hong Soo
Shin, Jihye
author_facet Seon, Kwang-il
Lee, Jaehyun
Ko, Jongwan
Byun, Woowon
Yoo, Jaewon
Chun, Kyungwon
Chun, Sang-Hyun
Hong, Sungryong
Kim, Jae-Woo
Park, Hong Soo
Shin, Jihye
contents In this paper, we review the extended halo material and the circumgalactic medium (CGM), including both dust and gas, and discuss promising science cases that could be realized using the KASI Deep Rolling Imaging Fast Telescope (K-DRIFT). Scattered starlight from cirrus clouds in our Galaxy poses one of the major challenges to studying the low surface brightness features of extragalactic sources. Therefore, it is essential to investigate how to discriminate extragalactic sources from the cirrus cloud features. At the same time, interstellar dust clouds themselves are fundamental to understanding dust properties and the interstellar radiation field, both of which are essential for studies of chemical evolution and star formation in our Galaxy. Measuring the reddening of background sources, such as quasars, with K-DRIFT, which benefits from its broad field of view and accurate background subtraction, allows for effective detection of extended dust in galactic halos, the CGM, and intracluster space. Observations of the H-alpha emission lines can be used to identify signatures of star formation activity within galaxies, as well as the environmental effects acting on them. Galactic winds driven by active galactic nuclei and starbursts can be traced through H-alpha emission. Strong ram pressure stripping effectively removes the interstellar medium (ISM) from galaxies. The stripped ISM becomes ionized or dissociated through mixing with the hot intracluster medium (ICM), forming H-alpha tails. The surface brightness of these H-alpha tails correlates not only with the presence of star formation in the tails but also the mixing stage of the stripped ISM and ICM. The H-alpha survey with K-DRIFT will enable the investigation of the evolutionary stages of ram pressure stripped galaxies in cluster environments, as well as the multiphase gas reservoir around galaxies and in the CGM.
format Preprint
id arxiv_https___arxiv_org_abs_2601_15665
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle K-DRIFT Science Theme: Galactic Cirrus Clouds and Circumgalactic Medium
Seon, Kwang-il
Lee, Jaehyun
Ko, Jongwan
Byun, Woowon
Yoo, Jaewon
Chun, Kyungwon
Chun, Sang-Hyun
Hong, Sungryong
Kim, Jae-Woo
Park, Hong Soo
Shin, Jihye
Astrophysics of Galaxies
Instrumentation and Methods for Astrophysics
In this paper, we review the extended halo material and the circumgalactic medium (CGM), including both dust and gas, and discuss promising science cases that could be realized using the KASI Deep Rolling Imaging Fast Telescope (K-DRIFT). Scattered starlight from cirrus clouds in our Galaxy poses one of the major challenges to studying the low surface brightness features of extragalactic sources. Therefore, it is essential to investigate how to discriminate extragalactic sources from the cirrus cloud features. At the same time, interstellar dust clouds themselves are fundamental to understanding dust properties and the interstellar radiation field, both of which are essential for studies of chemical evolution and star formation in our Galaxy. Measuring the reddening of background sources, such as quasars, with K-DRIFT, which benefits from its broad field of view and accurate background subtraction, allows for effective detection of extended dust in galactic halos, the CGM, and intracluster space. Observations of the H-alpha emission lines can be used to identify signatures of star formation activity within galaxies, as well as the environmental effects acting on them. Galactic winds driven by active galactic nuclei and starbursts can be traced through H-alpha emission. Strong ram pressure stripping effectively removes the interstellar medium (ISM) from galaxies. The stripped ISM becomes ionized or dissociated through mixing with the hot intracluster medium (ICM), forming H-alpha tails. The surface brightness of these H-alpha tails correlates not only with the presence of star formation in the tails but also the mixing stage of the stripped ISM and ICM. The H-alpha survey with K-DRIFT will enable the investigation of the evolutionary stages of ram pressure stripped galaxies in cluster environments, as well as the multiphase gas reservoir around galaxies and in the CGM.
title K-DRIFT Science Theme: Galactic Cirrus Clouds and Circumgalactic Medium
topic Astrophysics of Galaxies
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2601.15665