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SNEWS 2.0: A next-generation supernova early warning system for multi-messenger astronomy

  • S. Al Kharusi
    ,
  • S. Y. BenZvi
    ,
  • J. S. Bobowski
    ,
  • W. Bonivento
    ,
  • V. Brdar
    ,
  • T. Brunner
  • McGill University
    ,
  • University of Rochester
    ,
  • University of British Columbia Okanagan
    ,
  • Complesso Universitario di Monserrato
    ,
  • Fermi National Accelerator Laboratory
    ,
  • Northwestern University
Research Output:
Contribution to journal
Review article
Peer-review

Open access

Abstract

The next core-collapse supernova in the Milky Way or its satellites will represent a once-in-a-generation opportunity to obtain detailed information about the explosion of a star and provide significant scientific insight for a variety of fields because of the extreme conditions found within. Supernovae in our galaxy are not only rare on a human timescale but also happen at unscheduled times, so it is crucial to be ready and use all available instruments to capture all possible information from the event. The first indication of a potential stellar explosion will be the arrival of a bright burst of neutrinos. Its observation by multiple detectors worldwide can provide an early warning for the subsequent electromagnetic fireworks, as well as signal to other detectors with significant backgrounds so they can store their recent data. The supernova early warning system (SNEWS) has been operating as a simple coincidence between neutrino experiments in automated mode since 2005. In the current era of multi-messenger astronomy there are new opportunities for SNEWS to optimize sensitivity to science from the next galactic supernova beyond the simple early alert. This document is the product of a workshop in June 2019 towards design of SNEWS 2.0, an upgraded SNEWS with enhanced capabilities exploiting the unique advantages of prompt neutrino detection to maximize the science gained from such a valuable event.

Bibliographic Information

Output type

Research Output:
Contribution to journal
Review article
Peer-review

Original language

English

Article number

031201

Journal (Volume, Issue Number)

New Journal of Physics (Volume 23, Issue 3)

Publication milestones

  • Published - 03/2021

Publication status

Published - 03/2021

ISSN

1367-2630

Publication IDs

  • Scopus: 85101680653