Method on Using Shadow Altitude to Remove Geocoronal H$α$

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Main Authors: Wong, Wai-Kiu Ricky, Yan, Renbin, Lin, Zesen
Format: Preprint
Published: 2026
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author Wong, Wai-Kiu Ricky
Yan, Renbin
Lin, Zesen
author_facet Wong, Wai-Kiu Ricky
Yan, Renbin
Lin, Zesen
contents Spectroscopic surveys allow spatially resolved spectroscopy of galaxies to study their interstellar medium (ISM). However, observations of Galactic H$α$ emission are contaminated by geocoronal H$α$ emission. The latter is known to depend on the shadow altitude, a geometric parameter relating the line of sight to Earth's shadow cone. Using fibres on blank skys from the SDSS-IV/MaStar survey, we established an empirical relation between the geocoronal H$α$ emission and the shadow altitude, with a root mean square fractional scatter of 23.52$\%$. This relation can be used to predict geocoronal H$α$ emission so that it can be removed from observed spectra. This removal method is advantageous when the observed targets are extensive in the sky, and it does not require a large velocity separation between the observed target and the local standard of rest. This will enable reliable studies of Galactic H$α$ in intermediate spectral resolution integral field spectroscopic surveys. We also find tentative evidences for the dependences of geocoronal emission on solar activity and the distance between the Earth and the Sun.
format Preprint
id arxiv_https___arxiv_org_abs_2602_00779
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Method on Using Shadow Altitude to Remove Geocoronal H$α$
Wong, Wai-Kiu Ricky
Yan, Renbin
Lin, Zesen
Instrumentation and Methods for Astrophysics
Astrophysics of Galaxies
Spectroscopic surveys allow spatially resolved spectroscopy of galaxies to study their interstellar medium (ISM). However, observations of Galactic H$α$ emission are contaminated by geocoronal H$α$ emission. The latter is known to depend on the shadow altitude, a geometric parameter relating the line of sight to Earth's shadow cone. Using fibres on blank skys from the SDSS-IV/MaStar survey, we established an empirical relation between the geocoronal H$α$ emission and the shadow altitude, with a root mean square fractional scatter of 23.52$\%$. This relation can be used to predict geocoronal H$α$ emission so that it can be removed from observed spectra. This removal method is advantageous when the observed targets are extensive in the sky, and it does not require a large velocity separation between the observed target and the local standard of rest. This will enable reliable studies of Galactic H$α$ in intermediate spectral resolution integral field spectroscopic surveys. We also find tentative evidences for the dependences of geocoronal emission on solar activity and the distance between the Earth and the Sun.
title Method on Using Shadow Altitude to Remove Geocoronal H$α$
topic Instrumentation and Methods for Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2602.00779