English

Neutron reactions in accreting neutron stars: a new pathway to efficient crust heating

Astrophysics 2008-12-18 v1

Abstract

In our calculation of neutron star crust heating we include several key new model features. In earlier work electron capture (EC) only allowed neutron emission from the daughter ground-state; here we calculate, in a deformed QRPA model, EC decay rates to all states in the daughter that are allowed by Gamow-Teller selection rules and energetics. The subsequent branching ratios between the 1n,...,xn channels and the competing γ\gamma-decay are calculated in a Hauser-Feshbach model. Since EC accesses excited states, many more neutrons are emitted in our calculation than in previous work, leading to accelerated reaction flows. In our multi-component plasma model a single (EC,xn) reaction step can produce several neutron-deficient nuclei, each of which can further decay by (EC,xn). Hence, the neutron emission occurs more continuously with increasing depth as compared to that in a one-component plasma model.

Keywords

Cite

@article{arxiv.0811.1791,
  title  = {Neutron reactions in accreting neutron stars: a new pathway to efficient crust heating},
  author = {Sanjib S. Gupta and Toshihiko Kawano and Peter Möller},
  journal= {arXiv preprint arXiv:0811.1791},
  year   = {2008}
}

Comments

Two color figures, accepted for publication by Physical Review Letters