English

Investigating the Lower Mass Gap with Low Mass X-ray Binary Population Synthesis

High Energy Astrophysical Phenomena 2023-07-26 v2 Solar and Stellar Astrophysics

Abstract

Mass measurements from low-mass black hole X-ray binaries (LMXBs) and radio pulsars have been used to identify a gap between the most massive neutron stars (NSs) and the least massive black holes (BHs). BH mass measurements in LMXBs are typically only possible for transient systems: outburst periods enable detection via all-sky X-ray monitors, while quiescent periods enable radial-velocity measurements of the low-mass donor. We quantitatively study selection biases due to the requirement of transient behavior for BH mass measurements. Using rapid population synthesis simulations (COSMIC), detailed binary stellar-evolution models (MESA), and the disk instability model of transient behavior, we demonstrate that transient-LMXB selection effects introduce observational biases, and can suppress mass-gap BHs in the observed sample. However, we find a population of transient LMXBs with mass-gap BHs form through accretion-induced collapse of a NS during the LMXB phase, which is inconsistent with observations. These results are robust against variations of binary evolution prescriptions. The significance of this accretion-induced collapse population depends upon the maximum NS birth mass MNS,birthmaxM_\mathrm{ NS, birth-max}. To reflect the observed dearth of low-mass BHs, COSMIC and MESA models favor MNS,birthmax2MM_\mathrm{ NS, birth-max} \lesssim2M_{\odot}. In the absence of further observational biases against LMXBs with mass-gap BHs, our results indicate the need for additional physics connected to the modeling of LMXB formation and evolution.

Keywords

Cite

@article{arxiv.2209.06844,
  title  = {Investigating the Lower Mass Gap with Low Mass X-ray Binary Population Synthesis},
  author = {Jared C. Siegel and Ilia Kiato and Vicky Kalogera and Christopher P. L. Berry and Thomas J. Maccarone and Katelyn Breivik and Jeff J. Andrews and Simone S. Bavera and Aaron Dotter and Tassos Fragos and Konstantinos Kovlakas and Devina Misra and Kyle A. Rocha and Philipp M. Srivastava and Meng Sun and Zepei Xing and Emmanouil Zapartas},
  journal= {arXiv preprint arXiv:2209.06844},
  year   = {2023}
}

Comments

21 pages, accepted to ApJ

R2 v1 2026-06-28T01:18:43.319Z