Probing Electron-Capture Supernovae: X-Ray Binaries in Starbursts
arXiv:0807.1097 · doi:10.1088/0004-637X/699/2/1573
Abstract
Presenting population models of high-mass X-ray binaries (HMXBs) formed after bursts of star formation, we investigate the effect of electron-capture supernovae (ECS) of massive ONeMg white dwarfs and the hypothesis that ECS events are associated with typically low supernova kicks imparted to the nascent neutron stars. We identify an interesting ECS bump in the time evolution of HMXB numbers; this bump is caused by significantly increased production of wind-fed HMXBs 20-60 Myr post starburst. The amplitude and age extent of the ECS bump depend on the strength of ECS kicks and the mass range of ECS progenitors. We also find that ECS-HMXBs form through a specific evolutionary channel that is expected to lead to binaries with Be donors in wide orbits. These characteristics, along with their sensitivity to ECS properties, provide us with an intriguing opportunity to probe ECS physics and progenitors through studies of starbursts of different ages. Specifically, the case of the Small Magellanic Cloud, with a significant observed population of Be HMXBs and starburst activity 30-60 Myr ago, arises as a promising laboratory for understanding the role of electron-capture supernovae in neutron star formation.
5 pages, 3 figures, Published by ApJ in 07/09
References in corpus (6)
- Explosions of O-Ne-Mg Cores, the Crab Supernova, and Subluminous Type II-P Supernovae
- The Supernova Channel of Super-AGB Stars
- Formation and evolution of compact binaries in globular clusters: II. Binaries with neutron stars
- Multi-Dimensional Simulations of the Accretion-Induced Collapse of White Dwarfs to Neutron Stars
- Understanding Compact Object Formation and Natal Kicks: II. The case of XTE J1118+480
- The Chandra survey of the SMC "Bar": II. Optical counterparts of X-ray sources
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- On the Rarity of X-Ray Binaries with Naked Helium Donors
- Multiwavelength Characterization of the High Mass X-ray Binary Population of M33
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- Evidence for low kick velocities among high-mass X-ray binaries in the Small Magellanic Cloud from the spatial correlation function
- On the Formation of SMC X-1: the Effect of Mass and Orbital Angular Momentum Loss