Astrometric Gravitational-Wave Detection via Stellar Interferometry
arXiv:2204.07677 · doi:10.1103/PhysRevD.106.023002
Abstract
We evaluate the potential for gravitational-wave (GW) detection in the frequency band from 10 nHz to 1 Hz using extremely high-precision astrometry of a small number of stars. In particular, we argue that non-magnetic, photometrically stable hot white dwarfs (WD) located at kpc distances may be optimal targets for this approach. Previous studies of astrometric GW detection have focused on the potential for less precise surveys of large numbers of stars; our work provides an alternative optimization approach to this problem. Interesting GW sources in this band are expected at characteristic strains around . The astrometric angular precision required to see these sources is after integrating for a time . We show that jitter in the photometric center of WD of this type due to starspots is bounded to be small enough to permit this high-precision, small- approach. We discuss possible noise arising from stellar reflex motion induced by orbiting objects and show how it can be mitigated. The only plausible technology able to achieve the requisite astrometric precision is a space-based stellar interferometer. Such a future mission with few-meter-scale collecting dishes and baselines of is sufficient to achieve the target precision. This collector size is broadly in line with the collectors proposed for some formation-flown, space-based astrometer or optical synthetic-aperture imaging-array concepts proposed for other science reasons. The proposed baseline is however somewhat larger than the km-scale baselines discussed for those concepts, but we see no fundamental technical obstacle to utilizing such baselines. A mission of this type thus also holds the promise of being one of the few ways to access interesting GW sources in this band.
19 pages. Published version
References in corpus (69)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- The Gaia mission
- GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- The NANOGrav 12.5-year Data Set: Search For An Isotropic Stochastic Gravitational-Wave Background
- The frequency of planetary debris around young white dwarfs
- A gaseous metal disk around a white dwarf
- The International Pulsar Timing Array second data release: Search for an isotropic Gravitational Wave Background
- On the evidence for a common-spectrum process in the search for the nanohertz gravitational-wave background with the Parkes Pulsar Timing Array
- An Atomic Gravitational Wave Interferometric Sensor (AGIS)
- Common-red-signal analysis with 24-yr high-precision timing of the European Pulsar Timing Array: Inferences in the stochastic gravitational-wave background search
- Foretellings of Ragnarök: World-engulfing Asymptotic Giants and the Inheritance of White Dwarfs
- Techniques and Review of Absolute Flux Calibration from the Ultraviolet to the Mid-Infrared
- Matter-wave Atomic Gradiometer Interferometric Sensor (MAGIS-100)
- White Dwarf Rotation as a Function of Mass and a Dichotomy of Mode Linewidths: Kepler Observations of 27 Pulsating DA White Dwarfs Through K2 Campaign 8
- Gravitational Wave Detection with Atom Interferometry
- A Giant Planet Candidate Transiting a White Dwarf
- A planetesimal orbiting within the debris disc around a white dwarf star
- Accretion of a giant planet onto a white dwarf
- An Atomic Gravitational Wave Interferometric Sensor in Low Earth Orbit (AGIS-LEO)
- The frequency and infrared brightness of circumstellar discs at white dwarfs
- Planet Engulfment by ~1.5-3 Solar-Mass Red Giants
- The Parkes Pulsar Timing Array Project: Second data release
- Pulsar Timing Probes of Primordial Black Holes and Subhalos
- I Spy Transits and Pulsations: Empirical Variability in White Dwarfs Using Gaia and the Zwicky Transient Facility
- New Grids of Pure-Hydrogen White-Dwarf NLTE Model Atmospheres \newline and the HST/STIS Flux Calibration
- A Jovian analogue orbiting a white dwarf star
- Prospective Sensitivities of Atom Interferometers to Gravitational Waves and Ultralight Dark Matter
- Asteroids for Hz gravitational-wave detection
- Bridging the Hz gap in the gravitational-wave landscape with binary resonance
- Probing Dark Matter Substructure with Pulsar Timing
- Pulsar timing can constrain primordial black holes in the LIGO mass window
- Observability of Dark Matter Substructure with Pulsar Timing Correlations
- The occurrence of planets and other substellar bodies around white dwarfs using K2
- Recurring Planetary Debris Transits and Circumstellar Gas around White Dwarf ZTF J03281219
- Probing Small-Scale Power Spectra with Pulsar Timing Arrays
- Scattering searches for dark matter in subhalos: neutron stars, cosmic rays, and old rocks
- Serendipitous Discovery of Nine White Dwarfs With Gaseous Debris Disks
- Discovery of Beryllium in White Dwarfs Polluted by Planetesimal Accretion
- Relentless and Complex Transits from a Planetesimal Debris Disk
- Detecting stochastic gravitational waves with binary resonance
- Infrared Excesses around Bright White Dwarfs from Gaia and unWISE I
- Most white dwarfs with detectable dust discs show infrared variability
- Five New Post-Main-Sequence Debris Disks with Gaseous Emission
- Another one grinds the dust: Variability of the planetary debris disc at the white dwarf SDSS J104341.53+085558.2
- Overview of the SIM PlanetQuest Light (SIM-Lite) mission concept
- Circularization of tidal debris around white dwarfs: implications for gas production and dust variability
- First Results on Dark Matter Substructure from Astrometric Weak Lensing
- Do instabilities in high-multiplicity systems explain the existence of close-in white dwarf planets?
- Gravitational Wave Detection with Photometric Surveys
- Infrared Excesses around Bright White Dwarfs from Gaia and unWISE. II
- The Gaia spectrophotometric standard stars survey - III. Short-term variability monitoring
- Bayesian Forecasts for Dark Matter Substructure Searches with Mock Pulsar Timing Data
- Milky Way Accelerometry via Millisecond Pulsar Timing
- Accretion of tidally disrupted asteroids onto white dwarfs: direct accretion versus disk processing
- Gravity Gradient Noise from Asteroids
- The Power of Halometry
- Dark Matter Microhalos in the Solar Neighborhood: Pulsar Timing Signatures of Early Matter Domination
- Near-infrared variability in dusty white dwarfs: tracing the accretion of planetary material
- Gravitational Wave Timing Array
- Extending the frequency reach of pulsar timing array based gravitational wave search without high cadence observations
- Quantum-Assisted Optical Interferometers: Instrument Requirements
- The Milky Way, Coming into Focus: Precision Astrometry Probes its Evolution, and its Dark Matter
- Searching for TESS Photometric Variability of Possible JWST Spectrophotometric Standard Stars
- Disentangling the parameter space: The role of planet multiplicity in triggering dynamical instabilities on planetary systems around white dwarfs
- Photometry and spectroscopy of faint candidate spectrophotometric standard DA white dwarfs
- Multiwavelength Mitigation of Stellar Activity in Astrometric Planet Detection
- Optical detection of the 1.1-day variability at the white dwarf GD 394 with TESS
- Serendipitous discovery of a dusty disc around WDJ181417.84-735459.83
- The development of a testbed for the X-ray Interferometer mission