English

Broad Lyman-Alpha Emission from Supernova Remnants in Young Galaxies

Astrophysics 2009-11-13 v2

Abstract

Charge transfer (or exchange) reactions between hydrogen atoms and protons in collisionless shocks of supernova remnants (SNRs) are a natural way of producing broad Balmer, Lyman and other lines of hydrogen. We wish to quantify the importance of shock-induced, non-thermal hydrogen emission from SNRs in young galaxies. We present a method to estimate the luminosity of broad (1000\sim 1000 km s1^{-1}) Lyα\alpha, Lyβ\beta, Lyγ\gamma, Hβ\beta and Pα\alpha lines, as well as the broad and narrow luminosities of the two-photon (2γ\gamma) continuum, from existing measurements of the Hα\alpha flux. The expected broad Lyα\alpha luminosity per object is at most 1036\sim 10^{36} erg s1^{-1}. In principle, broad, ``non-radiative'' Lyα\alpha from SNRs in young galaxies can be directly observed in the optical range of wavelengths. However, by taking into consideration the different rates between core collapse and thermonuclear supernovae, as well as the duration we expect to observe such Lyα\alpha emission from SNRs, we expect their contribution to the total Lyα\alpha luminosity from z3z \sim 3 to 5 galaxies to be negligibly small (0.001\sim 0.001 %), compared to the radiative shock mechanism described by Shull & Silk (1979). Though broad, non-thermal Lyα\alpha emission has never been observed, these photons are produced in SNRs and hence the non-radiative Lyα\alpha luminosity is a part of the intrinsic Lyα\alpha spectrum of young galaxies.

Keywords

Cite

@article{arxiv.0710.4282,
  title  = {Broad Lyman-Alpha Emission from Supernova Remnants in Young Galaxies},
  author = {Kevin Heng and Rashid Sunyaev},
  journal= {arXiv preprint arXiv:0710.4282},
  year   = {2009}
}

Comments

15 pages, 9 figures. Accepted by A&A