Multi-messenger astronomy of gravitational-wave sources with flexible wide-area radio transient surveys
arXiv:1510.07054 · doi:10.1088/0004-637X/812/2/168
Abstract
We explore opportunities for multi-messenger astronomy using gravitational waves (GWs) and prompt, transient low-frequency radio emission to study highly energetic astrophysical events. We review the literature on possible sources of correlated emission of gravitational waves and radio transients, highlighting proposed mechanisms that lead to a short-duration, high-flux radio pulse originating from the merger of two neutron stars or from a superconducting cosmic string cusp. We discuss the detection prospects for each of these mechanisms by low-frequency dipole array instruments such as LWA1, LOFAR and MWA. We find that a broad range of models may be tested by searching for radio pulses that, when de-dispersed, are temporally and spatially coincident with a LIGO/Virgo GW trigger within a $\usim 30$ second time window and $\usim 200 \mendash 500 \punits{deg}^{2}$ sky region. We consider various possible observing strategies and discuss their advantages and disadvantages. Uniquely, for low-frequency radio arrays, dispersion can delay the radio pulse until after low-latency GW data analysis has identified and reported an event candidate, enabling a \emph{prompt} radio signal to be captured by a deliberately targeted beam. If neutron star mergers do have detectable prompt radio emissions, a coincident search with the GW detector network and low-frequency radio arrays could increase the LIGO/Virgo effective search volume by up to a factor of $\usim 2$. For some models, we also map the parameter space that may be constrained by non-detections.
31 pages, 4 figures
References in corpus (17)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- A bright millisecond radio burst of extragalactic origin
- LIGO: The Laser Interferometer Gravitational-Wave Observatory
- Fast Radio Burst Discovered in the Arecibo Pulsar ALFA Survey
- Producing ultra-strong magnetic fields in neutron star mergers
- Binary Neutron Star Mergers: Dependence on the Nuclear Equation of State
- The First Two Years of Electromagnetic Follow-Up with Advanced LIGO and Virgo
- Longterm general relativistic simulation of binary neutron stars collapsing to a black hole
- Parameter estimation for binary neutron-star coalescences with realistic noise during the Advanced LIGO era
- The Galactic Position Dependence of Fast Radio Bursts and the Discovery of FRB 011025
- Localization of gravitational wave sources with networks of advanced detectors
- The LOFAR Pilot Surveys for Pulsars and Fast Radio Transients
- Cosmic Sparks from Superconducting Strings
- Exploring binary-neutron-star-merger scenario of short-gamma-ray bursts by gravitational-wave observation
- Radio precursors to neutron star binary mergings
- Outlook for detection of GW inspirals by GRB-triggered searches in the Advanced detector era
- Monitoring the Sky with the Prototype All-Sky Imager on the LWA1
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- Using negative-latency gravitational wave alerts to detect prompt radio bursts from binary neutron star mergers with the Murchison Widefield Array
- Constraining a neutron star merger origin for localized fast radio bursts
- A First Search for Prompt Radio Emission from a Gravitational-Wave Event
- Gravitational-Wave Constraints on the Progenitors of Fast Radio Bursts
- Search for transient gravitational waves in coincidence with short duration radio transients during 2007-2013
- Murchison Widefield Array rapid-response observations of the short GRB 180805A
- The JAGWAR Prowls LIGO/Virgo O3 Paper I: Radio Search of a Possible Multi-Messenger Counterpart of the Binary Black Hole Merger Candidate S191216ap
- LOFAR 144-MHz follow-up observations of GW170817
- A VOEvent based automatic trigger system for the Murchison Widefield Array
- The Swarm Telescope Concept