Applying the metallicity-dependent binary fraction to double white dwarf formation: Implications for LISA
arXiv:2111.13700 · doi:10.3847/1538-4357/aca7be
Abstract
Short-period double white dwarf (DWD) binaries will be the most prolific source of gravitational waves (GWs) for the Laser Interferometer Space Antenna (LISA). DWDs with GW frequencies below mHz will be the dominant contributor to a stochastic foreground caused by overlapping GW signals. Population modeling of Galactic DWDs typically assumes a binary fraction of 50% and a log-uniform Zero Age Main Sequence (ZAMS) orbital period distribution. However, recent observations have shown that the binary fraction of close, solar-type stars exhibits a strong anti-correlation with metallicity which modulates the ZAMS orbital period distribution below days. In this study we perform the first simulation of the Galactic DWD population observable by LISA which incorporates an empirically-derived metallicity-dependent binary fraction, using the binary population synthesis suite COSMIC and a metallicity-dependent star formation history. We compare two models: one which assumes a metallicity-dependent binary fraction, and one with a binary fraction of 50%. We repeat our analysis for three different assumptions for Roche-lobe overflow interactions. We find that while metallicity impacts the evolution and intrinsic properties of our simulated DWD progenitor binaries, the LISA-resolvable populations of the two models remain roughly indistinguishable. However, the size of the total Galactic DWD population orbiting in the LISA frequency band is reduced by more than half when accounting for a metallicity-dependent binary fraction for two of our four variations, which also lowers the effective foreground. The LISA population remains unchanged in number for two variations, highlighting the sensitivity of the population to binary evolution prescriptions.
24 pages, 11 figures. Accepted version for publication in ApJ
References in corpus (25)
- The NumPy array: a structure for efficient numerical computation
- Science with the space-based interferometer LISA. IV: Probing inflation with gravitational waves
- One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways
- Post-common-envelope binaries from SDSS. IX: Constraining the common-envelope efficiency
- Using LISA EMRI sources to test off-Kerr deviations in the geometry of massive black holes
- Efficiency of mass transfer in massive close binaries, Tests from double-lined eclipsing binaries in the SMC
- Exploring the Lower Mass Gap and Unequal Mass Regime in Compact Binary Evolution
- Global Analysis of the Gravitational Wave Signal from Galactic Binaries
- Inferring the post-merger gravitational wave emission from binary neutron star coalescences
- Every interacting double white dwarf binary may merge
- Observationally driven Galactic double white dwarf population for LISA
- The Fate of Binaries in the Galactic Center: The Mundane and the Exotic
- Accreting Double white dwarf binaries: Implications for LISA
- Evolution of Close White Dwarf Binaries
- The Impact of Metallicity on the Evolution of Rotation and Magnetic Activity of Sun-Like Stars
- The Close Binary Fraction as a Function of Stellar Parameters in APOGEE: A Strong Anti-Correlation With Abundances
- Spectral separation of the stochastic gravitational-wave background for LISA in the context of a modulated Galactic foreground
- In Search of the Thermal Eccentricity Distribution
- A Census of Blue Stragglers in Gaia DR2 Open Clusters as a Test of Population Synthesis and Mass Transfer Physics
- LEGWORK: A python package for computing the evolution and detectability of stellar-origin gravitational-wave sources with space-based detectors
- Exploring compact binary merger host galaxies and environments with
- Gravitational waves from extreme mass ratio inspirals around bumpy black holes
- Long-term evolution of double white dwarf binaries accreting through direct impact
- The Loudest Stellar Heartbeat: Characterizing the most extreme amplitude heartbeat star system
- Hidden in Plain Sight: A Double-lined White Dwarf Binary 26 pc Away and a Distant Cousin
Cited by in corpus (11)
- The Lunar Gravitational-wave Antenna: Mission Studies and Science Case
- Cataclysmic variables are a key population of gravitational wave sources for LISA
- Expected insights on type Ia supernovae from LISA's gravitational wave observations
- Templated Anisotropic Analyses of the LISA Galactic Foreground
- LISA double white dwarf binaries as Galactic accelerometers
- Recovering Injected Astrophysics from the LISA Galactic Double White Dwarf Binaries
- The role of triple evolution in the formation of LISA double white dwarfs
- Evaluating the gravitational wave detectability of globular clusters and the Magellanic Clouds for LISA
- Population Synthesis of Gravitational Wave Sources
- Calibration of Binary Population Synthesis Models Using White Dwarf Binaries from APOGEE, GALEX and Gaia
- Detectability of massive binary black holes with sub-mHz gravitational wave missions