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Prospects for Time-Domain and Multi-Messenger Science with AXIS

Authors :
Time-Domain, The AXIS
Group, Multi-Messenger Science Working
Arcodia, Riccardo
Bauer, Franz E.
Cenko, S. Bradley
Dage, Kristen C.
Haggard, Daryl
Ho, Wynn C. G.
Kara, Erin
Koss, Michael
Liu, Tingting
Mallick, Labani
Negro, Michela
Pradhan, Pragati
Quirola-Vasquez, J.
Reynolds, Mark T.
Ricci, Claudio
Rothschild, Richard E.
Sridhar, Navin
Troja, Eleonora
Yao, Yuhan
Publication Year :
2023

Abstract

The Advanced X-ray Imaging Satellite (AXIS) promises revolutionary science in the X-ray and multi-messenger time domain. AXIS will leverage excellent spatial resolution (<1.5 arcsec), sensitivity (80x that of Swift), and a large collecting area (5-10x that of Chandra) across a 24-arcmin diameter field of view to discover and characterize a wide range of X-ray transients from supernova-shock breakouts to tidal disruption events to highly variable supermassive black holes. The observatory's ability to localize and monitor faint X-ray sources opens up new opportunities to hunt for counterparts to distant binary neutron star mergers, fast radio bursts, and exotic phenomena like fast X-ray transients. AXIS will offer a response time of <2 hours to community alerts, enabling studies of gravitational wave sources, high-energy neutrino emitters, X-ray binaries, magnetars, and other targets of opportunity. This white paper highlights some of the discovery science that will be driven by AXIS in this burgeoning field of time domain and multi-messenger astrophysics.<br />Comment: This White Paper is part of a series commissioned for the AXIS Probe Concept Mission; additional AXIS White Papers can be found at http://axis.astro.umd.edu

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2311.07658
Document Type :
Working Paper