Gravitational Waves from Double White Dwarfs as probes of the Milky Way
arXiv:2204.07349 · doi:10.1093/mnras/stac3686
Abstract
Future gravitational wave detectors, such as the Laser Interferometer Space Antenna (\textit{LISA}), will be able to resolve a significant number of the ultra compact stellar-mass binaries in our own Galaxy and its neighborhood. These will be mostly double white dwarf (DWD) binaries, and their underlying population characteristics can be directly correlated to the different properties of the Galaxy. In particular, with \textit{LISA} we will be able to resolve binaries, while the rest will generate a confusion foreground signal. Analogously to how the total electromagnetic radiation emitted by a galaxy can be related to the underlying total stellar mass, in this work we propose a framework to infer the same quantity by investigating the spectral shape and amplitude of the confusion foreground signal. For a fixed DWD evolution model, and thus a fixed binary fraction, we retrieve percentage-level relative errors on the total stellar mass, which improves for increasing values of the mass. At the same time, we find that variations in the Milky Way shape, at a fixed mass and at scale heights smaller than 500~pc, are not distinguishable based on the shape of stochastic signal alone. We perform this analysis on simulations of the LISA data, estimating the resolvable sources based on signal-to-noise criteria. Finally, we utilize the catalogue of resolvable sources to probe the characteristics of the underlying population of DWD binaries. We show that the DWD frequency, coalescence time and chirp mass (up to M) distributions can be reconstructed from \textit{LISA} data with no bias.
15 pages, 9 figures
References in corpus (22)
- Use and Abuse of the Fisher Information Matrix in the Assessment of Gravitational-Wave Parameter-Estimation Prospects
- Gravitational waves from resolvable massive black hole binary systems and observations with Pulsar Timing Arrays
- The age-metallicity structure of the Milky Way disk
- Science with the TianQin Observatory: Preliminary results on Galactic double white dwarf binaries
- Improved reconstruction of a stochastic gravitational wave background with LISA
- Tests of Bayesian Model Selection Techniques for Gravitational Wave Astronomy
- Global Analysis of the Gravitational Wave Signal from Galactic Binaries
- Characterization of the stochastic signal originating from compact binaries populations as measured by LISA
- Every interacting double white dwarf binary may merge
- A Solution to the Galactic Foreground Problem for LISA
- Observationally driven Galactic double white dwarf population for LISA
- The Canada-France Imaging Survey: Reconstructing the Milky Way Star Formation History from its White Dwarf Population
- LISA Sensitivity and SNR Calculations
- Modelling the formation of double white dwarfs
- Gravitational-wave parameter estimation with gaps in LISA: a Bayesian data augmentation method
- Spectral separation of the stochastic gravitational-wave background for LISA in the context of a modulated Galactic foreground
- Effect of data gaps on the detectability and parameter estimation of massive black hole binaries with LISA
- The binary fraction, separation distribution, and merger rate of white dwarfs from SPY
- Gravitational waves from extreme mass ratio inspirals around bumpy black holes
- Weighing Milky Way Satellites with LISA
- Detection of LIGO-Virgo binary black holes in the pair-instability mass gap
- LISA Gravitational Wave Sources in A Time-Varying Galactic Stochastic Background
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- Influence of a mass transfer stability criterion on double white dwarf populations
- Precision cosmology with primordial GW backgrounds in presence of astrophysical foregrounds
- A weakly-parametric approach to stochastic background inference in LISA
- Fast resolving Galactic binaries in LISA data and its ability to study the Milky Way
- Heavy-tailed likelihoods for robustness against data outliers: Applications to the analysis of gravitational wave data
- Cyclostationary signals in LISA: a practical application to Milky Way satellites
- Compact Objects in close orbits as Gravitational Wave Sources: Formation Scenarios and Properties
- Galactic transient sources with the Cherenkov Telescope Array Observatory
- LISA double white dwarf binaries as Galactic accelerometers
- Discovering neutron stars with LISA via measurements of orbital eccentricity in Galactic binaries
- Test for LISA foreground Gaussianity and stationarity: galactic white-dwarf binaries
- Exploring Temperature Influences on Gravitational Wave Production in Binary White Dwarfs
- Accelerating LISA inference with Gaussian processes
- Extracting overlapping gravitational-wave signals of galactic compact binaries: a mini review
- Charged anisotropic white dwarfs in gravity
- Detection prospects for the GW background of Galactic (sub)solar mass primordial black holes
- LISA Galactic Binaries in the Roman Galactic Bulge Time-Domain Survey
- Assessing the performance of future space-based detectors: Astrophysical foregrounds and individual sources
- A new code for low-resolution spectral identification of white dwarf binary candidates
- Stochastic gravitational wave background from the collisions of dark matter halos