Constraining stellar binary black hole formation scenarios with eLISA eccentricity measurements
arXiv:1606.09295 · doi:10.1093/mnras/stw2993
Abstract
A space-based interferometer such as eLISA could observe few to few thousands progenitors of black hole binaries (BHBs) similar to those recently detected by Advanced LIGO. Gravitational radiation circularizes the orbit during inspiral, but some BHBs retain a measurable eccentricity at the low frequencies where eLISA is most sensitive. The eccentricity of a BHB carries precious information about its formation channel: BHBs formed in the field, in globular clusters, or close to a massive black hole (MBH) have distinct eccentricity distributions in the eLISA band. We generate mock eLISA observations, folding in measurement errors, and using Bayesian model selection we study whether eLISA measurements can identify the BHB formation channel. We find that a handful of observations would suffice to tell whether BHBs were formed in the gravitational field of a MBH. Conversely, several tens of observations are needed to tell apart field formation from globular cluster formation. A five-year eLISA mission with the longest possible armlength is desirable to shed light on BHB formation scenarios.
5 figures, 1 table
References in corpus (6)
- The Evolution of Compact Binary Star Systems
- Double Compact Objects III: Gravitational Wave Detection Rates
- Reconstructing the massive black hole cosmic history through gravitational waves
- Low metallicity and ultra-luminous X-ray sources in the Cartwheel galaxy
- Orbital eccentricities in primordial black holes binaries
- Black Hole Spin Evolution: Implications for Short-hard Gamma Ray Bursts and Gravitational Wave Detection
Cited by in corpus (6)
- Stellar-mass black holes in young massive and open stellar clusters and their role in gravitational-wave generation
- Stellar-mass black holes in young massive and open stellar clusters and their role in gravitational-wave generation II
- Mid-band gravitational wave detection with precision atomic sensors
- Detecting Supermassive Black Hole-Induced Binary Eccentricity Oscillations with LISA
- Ready-to-use Fourier domain templates for compact binaries inspiraling along moderately eccentric orbits
- Multimessenger Universe with Gravitational Waves from Binaries