The origin and fate of short-period low-mass black-hole binaries
arXiv:astro-ph/0604434 · doi:10.1051/0004-6361:20064984
Abstract
We present results of a population synthesis study for semidetached short orbital period binaries which contain low-mass(<1.5 Msun) donors and black hole (>4 Msun) accretors. Evolution of these binaries is determined by nuclear evolution of the donors and/or orbital angular momentum loss due to magnetic braking by the stellar wind of the donors and gravitational wave radiation. According to our model, the estimated total number of this type of black-hole binaries in the Galaxy is about 10000. If the magnetic braking is described by the Verbunt & Zwaan formula, the model predicts around 3000 transient systems with periods >2 hours and around 300 luminous stable systems with periods between 3 and 8 hours. Several dozens of these bright systems should be above the RXTE ASM sensitivity limit. The absence of such systems implies that angular momentum losses are reduced by a factor more than 2 with respect to the Verbunt & Zwaan prescription. We show that it is unlikely that the transient behaviour of black-hole short-period X-ray binaries is explained by the evolved nature of the stellar companion. A substantial fraction of black-hole binaries with periods >3 hours could be faint with truncated, stable cold accretion discs as proposed by Menou et al. Most of the semidetached black-hole binaries are expected to have periods shorter than ~2 hours. Properties of such, still to be observed, very small mass-ratio (q<0.02) binaries are different from those of their longer period cousins.
13 pages, 6 figures, accepted for publication in A&A
Cited by in corpus (37)
- The Evolution of Compact Binary Star Systems
- Advection-Dominated Accretion and the Black Hole Event Horizon
- COSMIC Variance in Binary Population Synthesis
- It has to be cool: on supergiant progenitors of binary black hole mergers from common-envelope evolution
- Stability of helium accretion discs in ultracompact binaries
- Hunting Black Holes with Gaia
- Population synthesis of ultracompact X-ray binaries in the Galactic Bulge
- The dynamical formation of LMXBs in dense stellar environments: globular clusters and the inner bulge of M31
- Low-Mass X-ray Binaries
- High-energy Cosmic Ray production in X-ray Binary Jets
- Non-interacting black hole binaries with Gaia and LAMOST
- The INTEGRAL view on Black Hole X-ray Binaries
- Evolutionary models of short-period soft X-ray transients: comparison with observations
- ADAFs, accretion discs and outbursts in compact binaries
- The coupled effect of tides and stellar winds on the evolution of compact binaries
- Population synthesis of classical low-mass X-ray binaries in the Galactic Bulge
- Magnetically Arrested Disks in Quiescent Black-Hole Binaries: Formation Scenario, Observable Signatures, and Potential PeVatrons
- Mining for Candidates of Galactic Stellar-mass Black Hole Binaries with LAMOST
- Golden galactic binaries for LISA: mass-transferring white dwarf black hole binaries
- Physics of accretion flows around compact objects
- Optical, J, and K light curves of XTE J1118+480 = KV UMa: the mass of the black hole and the spectrum of the non-stellar component
- Selection Effects on the Orbital Period Distribution of Low Mass Black Hole X-ray Binaries
- Black Hole Ultra-compact X-ray Binaries: Galactic Low-Frequency Gravitational Wave Sources
- Minute-Cadence Observations of the LAMOST Fields with the TMTS: II. Catalogues of Short-Period Variable Stars from the First Two-Year Surveys
- Astrophysics in 2006
- The Weizmann Fast Astronomical Survey Telescope (W-FAST): System Overview
- Using radial velocities to reveal black holes in binaries: a test case
- Evolution of low-mass binaries with black-hole components
- Astrophysics with the Laser Interferometer Space Antenna
- Constraining the nature of the accreting binary in CXOGBS J174623.5-310550
- Quiescent black hole X-ray binaries as multi-messenger sources
- Stellar-Mass Black Holes
- Tests of General Relativity using black hole X-ray data
- Lucky planets: how circum-binary planets survive the supernova in one of the inner-binary components
- The X-ray binaries in M83: will any of them form gravitational wave sources for LIGO/VIRGO/KAGRA?
- An infrared FWHM- correlation to uncover highly reddened quiescent black holes
- Hints of Dark Matter Spikes in Low-mass X-ray Binaries: a critical assessment