Epsilon Canis Majoris: The Brightest EUV Source with Surprisingly Low Interstellar Absorption
Abstract
The B2 star CMa, at parallax distance ~pc, dominates the H I photoionization of the local interstellar cloud (LIC). At its closer parallax distance compared to previous estimates, CMa has a 0.9 mag fainter absolute magnitude . We combine measurements of distance with the integrated flux and angular diameter ~mas to produce a consistent set of stellar parameters: radius , mass , gravity , effective temperature ~K, and luminosity . These parameters place Epsilon CMa outside the Cephei instability strip, consistent with its observed lack of pulsations. The observed EUV spectrum yields a hydrogen photoionization rate s (at Earth). The total flux decrement factor at the Lyman limit () is a combination of attenuation in the stellar atmosphere () and interstellar medium () with optical depth . After correcting for interstellar HI column density , we find a stellar LyC photon flux and ionizing luminosity photons s. The photoionization rate (1-2) at the cloud surface produces an ionization fraction (30-40\%) for total hydrogen density cm. With its km/s heliocentric radial velocity and small proper motion, CMa passed within pc of the Sun 4.4 Myr ago, with a 180 times higher photoionization rate.
Cite
@article{arxiv.2412.06919,
title = {Epsilon Canis Majoris: The Brightest EUV Source with Surprisingly Low Interstellar Absorption},
author = {J. Michael Shull and Rachel M. Curran and Michael W. Topping},
journal= {arXiv preprint arXiv:2412.06919},
year = {2024}
}
Comments
20 pages, 4 figures, 3 tables, Accepted to Astrophysical Journal