English

Epsilon Canis Majoris: The Brightest EUV Source with Surprisingly Low Interstellar Absorption

Astrophysics of Galaxies 2024-12-11 v1 Solar and Stellar Astrophysics

Abstract

The B2 star ϵ\epsilon CMa, at parallax distance d=124±2d = 124\pm2~pc, dominates the H I photoionization of the local interstellar cloud (LIC). At its closer parallax distance compared to previous estimates, ϵ\epsilon CMa has a 0.9 mag fainter absolute magnitude MV=3.97±0.04M_V =-3.97\pm0.04. We combine measurements of distance with the integrated flux f=(41.5±3.3)×106 erg cm2 s1f = (41.5\pm3.3) \times 10^{-6}~{\rm erg~cm}^{-2}~{\rm s}^{-1} and angular diameter θd=0.80±0.05\theta_d = 0.80\pm0.05~mas to produce a consistent set of stellar parameters: radius R=10.7±0.7 RR = 10.7\pm0.7~R_{\odot}, mass M=13.1±2.3 MM = 13.1\pm2.3~M_{\odot}, gravity logg=3.50±0.05\log g = 3.50\pm0.05, effective temperature Teff21,000T_{\rm eff} \approx 21,000~K, and luminosity L20,000 LL \approx 20,000~L_{\odot}. These parameters place Epsilon CMa outside the β\beta Cephei instability strip, consistent with its observed lack of pulsations. The observed EUV spectrum yields a hydrogen photoionization rate ΓHI1015\Gamma_{\rm HI} \approx 10^{-15} s1^{-1} (at Earth). The total flux decrement factor at the Lyman limit (ΔLL=5000±500\Delta_{\rm LL} = 5000\pm500) is a combination of attenuation in the stellar atmosphere (Δstar=110±10\Delta_{\rm star} = 110\pm10) and interstellar medium (ΔISM=45±5\Delta_{\rm ISM} = 45\pm5) with optical depth τLL=3.8±0.1\tau_{\rm LL} = 3.8\pm0.1. After correcting for interstellar HI column density NHI=(6±1)×1017 cm2N_{\rm HI} = (6\pm1)\times10^{17}~{\rm cm}^{-2}, we find a stellar LyC photon flux ΦLyC3000 cm2 s1\Phi_{\rm LyC} \approx 3000~{\rm cm}^{-2}~{\rm s}^{-1} and ionizing luminosity QLyC=1045.7±0.3Q_{\rm LyC} = 10^{45.7\pm0.3} photons s1^{-1}. The photoionization rate ΓH\Gamma_{\rm H} \approx (1-2)×1014 s1\times 10^{-14}~{\rm s}^{-1} at the cloud surface produces an ionization fraction (30-40\%) for total hydrogen density nH=0.2n_{\rm H} = 0.2 cm3^{-3}. With its 27.3±0.427.3\pm0.4 km/s heliocentric radial velocity and small proper motion, ϵ\epsilon CMa passed within 9.3±0.59.3\pm0.5 pc of the Sun 4.4 Myr ago, with a 180 times higher photoionization rate.

Keywords

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

R2 v1 2026-06-28T20:28:33.236Z