Determining the Hubble constant from gravitational wave observations of merging compact binaries
arXiv:1307.2638
Abstract
Recent observations have accumulated compelling evidence that some short gamma-ray bursts (SGRBs) are associated with the mergers of neutron star (NS) binaries. This would indicate that the SGRB event is associated with a gravitational-wave (GW) signal corresponding to the final inspiral of the compact binary. In addition, the radioactive decay of elements produced in NS binary mergers may result in transients visible in the optical and infrared with peak luminosities on hours-days timescales. Simultaneous observations of the inspiral GWs and signatures in the electromagnetic band may allow us to directly and independently determine both the luminosity distance and redshift to a binary. These standard sirens (the GW analog of standard candles) have the potential to provide an accurate measurement of the low-redshift Hubble flow. In addition, these systems are absolutely calibrated by general relativity, and therefore do not experience the same set of astrophysical systematics found in traditional standard candles, nor do the measurements rely on a distance ladder. We show that 15 observable GW and EM events should allow the Hubble constant to be measured with 5% precision using a network of detectors that includes advanced LIGO and Virgo. Measuring 30 beamed GW-SGRB events could constrain H_0 to better than 1%. When comparing to standard Gaussian likelihood analysis, we find that each event's non-Gaussian posterior in H_0 helps reduce the overall measurement errors in H_0 for an ensemble of NS binary mergers.
To be submitted to ApJ, 8 pages in emulateapj format, 1 table, 2 figures
References in corpus (3)
Cited by in corpus (24)
- A gravitational-wave standard siren measurement of the Hubble constant
- The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/Virgo GW170817. I. Dark Energy Camera Discovery of the Optical Counterpart
- Cosmology Intertwined II: The Hubble Constant Tension
- A 2 per cent Hubble constant measurement from standard sirens within 5 years
- Does the Hubble constant tension call for new physics?
- Electromagnetic Counterparts to Black Hole Mergers Detected by LIGO
- Limits on the number of spacetime dimensions from GW170817
- Velocity correction for Hubble constant measurements from standard sirens
- Host redshifts from gravitational-wave observations of binary neutron star mergers
- Stellar binary black holes in the LISA band: a new class of standard sirens
- Constraining the Hubble constant to a precision of about 1% using multi-band dark standard siren detections
- Merging Rates of Compact Binaries in Galaxies: Perspectives for Gravitational Wave Detections
- Constraining the cosmological parameters using gravitational wave observations of massive black hole binaries and statistical redshift information
- Serendipitous Discoveries of Kilonovae in the LSST Main Survey: Maximising Detections of Sub-Threshold Gravitational Wave Events
- Prospects for Measuring the Hubble Constant with Neutron-Star-Black-Hole Mergers
- Lensing efficiency for gravitational wave mergers
- Unbiased likelihood-free inference of the Hubble constant from light standard sirens
- Distance Probes of Dark Energy
- Constraining properties of neutron star merger outflows with radio observations
- Towards observing the neutron star collapse with gravitational wave detectors
- The detection efficiency of on-axis short gamma ray burst optical afterglows triggered by aLIGO/Virgo
- Testing and Emulating Modified Gravity on Cosmological Scales
- An interacting dark sector and the first gravitational-wave standard siren detection
- Matters of Gravity, The Newsletter of the Division of Gravitational Physics of the American Physical Society, Volume 48, December 2016