Prospects for detecting gravitational waves at 5 Hz with ground-based detectors
arXiv:1712.05417 · doi:10.1103/PhysRevLett.120.141102
Abstract
We propose an upgrade to Advanced LIGO (aLIGO), named LIGO-LF, that focuses on improving the sensitivity in the 5-30 Hz low-frequency band, and we explore the upgrade's astrophysical applications. We present a comprehensive study of the detector's technical noises and show that with technologies currently under development, such as interferometrically sensed seismometers and balanced-homodyne readout, LIGO-LF can reach the fundamental limits set by quantum and thermal noises down to 5 Hz. These technologies are also directly applicable to the future generation of detectors. We go on to consider this upgrade's implications for the astrophysical output of an aLIGO-like detector. A single LIGO-LF can detect mergers of stellar-mass black holes (BHs) out to a redshift of z~6 and would be sensitive to intermediate-mass black holes up to 2000 M_\odot. The detection rate of merging BHs will increase by a factor of 18 compared to aLIGO. Additionally, for a given source the chirp mass and total mass can be constrained 2 times better than aLIGO and the effective spin 3-5 times better than aLIGO. Furthermore, LIGO-LF enables the localization of coalescing binary neutron stars with an uncertainty solid angle 10 times smaller than that of aLIGO at 30 Hz, and 4 times smaller when the entire signal is used. LIGO-LF also significantly enhances the probability of detecting other astrophysical phenomena including the tidal excitation of neutron star r-modes and the gravitational memory effects.
5 pages, 6 figures, published in PRL
References in corpus (20)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Multi-messenger Observations of a Binary Neutron Star Merger
- Advanced LIGO
- GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence
- GW170608: Observation of a 19-solar-mass Binary Black Hole Coalescence
- Exploring the Sensitivity of Next Generation Gravitational Wave Detectors
- Robust parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
- Scientific Objectives of Einstein Telescope
- Towards models of gravitational waveforms from generic binaries II: Modelling precession effects with a single effective precession parameter
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- Using spin to understand the formation of LIGO's black holes
- Nonlinear gravitational-wave memory from binary black hole mergers
- Resonant tidal excitation of superfluid neutron stars in coalescing binaries
- Sensors and Actuators for the Advanced LIGO Mirror Suspensions
- Using gravitational-wave data to constrain dynamical tides in neutron star binaries
- Multi-Material Coatings with Reduced Thermal Noise
- Dynamical tides in coalescing superfluid neutron star binaries with hyperon cores and their detectability with third generation gravitational-wave detectors
- Audio-band Coating Thermal Noise Measurement for Advanced LIGO with a Multi-mode Optical Resonator
- Status of the continuous gravitational wave searches in the Advanced Detector Era
Cited by in corpus (42)
- Exploring the sensitivity of gravitational wave detectors to neutron star physics
- Parallelized Inference for Gravitational-Wave Astronomy
- Thanks for the memory: measuring gravitational-wave memory in the first LIGO/Virgo gravitational-wave transient catalog
- Gravitational-wave physics with Cosmic Explorer: limits to low-frequency sensitivity
- Probing multiple populations of compact binaries with third-generation gravitational-wave detectors
- Astrophysics and cosmology with a decihertz gravitational-wave detector: TianGO
- Quantum correlation of light mediated by gravity
- Gravitational-wave memory: waveforms and phenomenology
- Exciting black hole modes via misaligned coalescences: II. The mode content of late-time coalescence waveforms
- Learning about black hole binaries from their ringdown spectra
- Exciting black hole modes via misaligned coalescences: I. Inspiral, transition, and plunge trajectories using a generalized Ori-Thorne procedure
- Towards the Design of Gravitational-Wave Detectors for Probing Neutron-Star Physics
- Gravitomagnetic tidal resonance in neutron-star binary inspirals
- Ultralight vector dark matter search with auxiliary length channels of gravitational wave detectors
- Identifying when Precession can be Measured in Gravitational Waveforms
- Implications of dedicated seismometer measurements on Newtonian-noise cancellation for Advanced LIGO
- Compact Michelson interferometers with subpicometer sensitivity
- Astrophysical science metrics for next-generation gravitational-wave detectors
- Testing Gravitational Memory Generation with Compact Binary Mergers
- Early warning of coalescing neutron-star and neutron-star-black-hole binaries from nonstationary noise background using neural networks
- A 6D interferometric inertial isolation system
- Passive optical gyroscope with double homodyne readout
- Detecting resonant tidal excitations of Rossby modes in coalescing neutron-star binaries with third-generation gravitational-wave detectors
- Frequency space derivation of linear and non-linear memory gravitational wave signals from eccentric binary orbits
- Particle swarm optimization of the sensitivity of a cryogenic gravitational wave detector
- PyROQ: a Python-based Reduced Order Quadrature Building Code for Fast Gravitational Wave Inference
- Active platform stabilisation with a 6D seismometer
- A six degree-of-freedom fused silica seismometer: Design and tests of a metal prototype
- A two-carrier scheme: evading the 3dB quantum penalty of heterodyne readout in gravitational-wave detectors
- Fundamental Relations between Measurement, Radiation and Decoherence in Gravitational Wave Laser Interferometer Detectors
- fractional laser frequency stability with a 7-cm unequal-arm Mach-Zehnder interferometer
- Quantum Squeezing Schemes for Heterodyne Readout
- Improving cosmological reach of a gravitational wave observatory using Deep Loop Shaping
- The Sound of Clearing the Throat: Gravitational Waves from a Black Hole Orbiting in a Wormhole Geometry
- Memory Effect of Gravitational Wave Pulses in PP-Wave Spacetimes
- Reducing controls noise in gravitational wave detectors with interferometric local damping of suspended optics
- Astro2020 Decadal Science White Paper: The state of gravitational-wave astrophysics in 2020
- Nonlinear noise regression in gravitational-wave detectors with convolutional neural networks
- Role of particle diffusion in shaping the gravitational wave signal from neutron star inspirals
- Extending Ground-Based Gravitational-Wave Sensitivity to 5 Hz
- Interferometric sensing of a commercial geophone
- Gravitational wave memory and quantum Michelson interferometer