Binary White Dwarfs as Laboratories for Extreme Gravity with LISA
arXiv:1811.01093 · doi:10.1088/1361-6382/ab0a3d
Abstract
The observation of low-frequency gravitational waves with the Laser Interferometer Space Antenna will allow the study of new sources of gravitational radiation that are not accessible by ground-based instruments. Gravitational wave sources provide invaluable information both about their astrophysics, as well as the nature of the gravitational interaction in their neighborhoods. One low frequency source that has not received much attention regarding the latter are galactic binaries composed of two white dwarves or a white dwarf and a neutron star. We here show that, contrary to the common lore, such gravitational wave sources can indeed be used to constrain an important feature of the gravitational interaction: the absence of pre-Newtonian, dipolar dissipation. We propose a model-independent framework to carry out a null test for the presence of this feature in the data that is very much analogous to tests of General Relativity with radio-observations of binary pulsars. We then go one step further and specialize this test to scalar-tensor theories to derive projected constraints on spontaneous scalarization. We find that these constraints can be comparable to current bounds with binary pulsars, and in some optimistic cases, they can be even stronger.
18 pages, 10 figures, submitted to CQG
References in corpus (29)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- Quantum Gravity at a Lifshitz Point
- GW170817: Measurements of Neutron Star Radii and Equation of State
- GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence
- LIGO: The Laser Interferometer Gravitational-Wave Observatory
- Gravitational-wave constraints on the neutron-star-matter Equation of State
- The Emergence of a Lanthanide-Rich Kilonova Following the Merger of Two Neutron Stars
- GW170817: Joint Constraint on the Neutron Star Equation of State from Multimessenger Observations
- The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most stringent test of scalar-tensor gravity
- Dynamical Chern-Simons Modified Gravity I: Spinning Black Holes in the Slow-Rotation Approximation
- Non-Spinning Black Holes in Alternative Theories of Gravity
- Neutron-star mergers in scalar-tensor theories of gravity
- A 15.65 solar mass black hole in an eclipsing binary in the nearby spiral galaxy Messier 33
- Slowly-Rotating Black Holes in Einstein-Dilaton-Gauss-Bonnet Gravity: Quadratic Order in Spin Solutions
- LISA verification binaries with updated distances from Gaia Data Release 2
- Bumpy Black Holes in Alternate Theories of Gravity
- Tests of Bayesian Model Selection Techniques for Gravitational Wave Astronomy
- Measuring the neutron star tidal deformability with equation-of-state-independent relations and gravitational waves
- Testing the white dwarf mass-radius relationship with eclipsing binaries
- The LISA verification binaries
- Projected Constraints on Scalarization with Gravitational Waves from Neutron Star Binaries
- The Effect of Cosmological Evolution on Solar System Constraints and on the Scalarization of Neutron Stars in Massless Scalar-Tensor Theories
- Solar System Constraints on Scalar-Tensor Gravity with Positive Coupling Constant upon Cosmological Evolution of the Scalar Field
- Probing white dwarf interiors with LISA: periastron precession in double white dwarfs
- Population Boundaries for Galactic White Dwarf Binaries in LISA's Amplitude-Frequency Domain
- Selection effects in resolving Galactic binaries with LISA
- Slice & Dice: Identifying and Removing Bright Galactic Binaries from LISA Data
Cited by in corpus (21)
- Prospects for Fundamental Physics with LISA
- The TianQin project: current progress on science and technology
- Science with the TianQin Observatory: Preliminary results on Galactic double white dwarf binaries
- Global Analysis of the Gravitational Wave Signal from Galactic Binaries
- Characterization of the stochastic signal originating from compact binaries populations as measured by LISA
- Detection of astrophysical gravitational wave sources by TianQin and LISA
- Future Prospects for Probing Scalar-Tensor Theories with Gravitational Waves from Mixed Binaries
- Bayesian parameter-estimation of Galactic binaries in LISA data with Gaussian Process Regression
- Improved Constraints on Modified Gravity with Eccentric Gravitational Waves
- Golden galactic binaries for LISA: mass-transferring white dwarf black hole binaries
- Bayesian Characterisation of Circumbinary Exoplanets with LISA
- The LISA Data Challenge Radler Analysis and Time-dependent Ultra-compact Binary Catalogues
- The interacting double white dwarf population with LISA; stochastic foreground and resolved sources
- Scalable data-analysis framework for long-duration gravitational waves from compact binaries using short Fourier transforms
- A novel stacked hybrid autoencoder for imputing LISA data gaps
- LISA double white dwarf binaries as Galactic accelerometers
- Crystallized white dwarf stars in scalar-tensor gravity
- Revealing the nature of long-period transients with space-based gravitational-wave interferometers
- Search for Higher Harmonic Signals from Close White Dwarf Binaries in the mHz Band
- LISA Galactic Binaries in the Roman Galactic Bulge Time-Domain Survey
- LISA Gravitational Wave Sources in A Time-Varying Galactic Stochastic Background