Skip to main navigation Skip to search Skip to main content

A Mildly Relativistic Outflow from the Energetic, Fast-rising Blue Optical Transient CSS161010 in a Dwarf Galaxy

  • D. L. Coppejans
  • , R. Margutti
  • , G. Terreran
  • , A. J. Nayana
  • , E. R. Coughlin
  • , T. Laskar
  • , K. D. Alexander
  • , M. Bietenholz
  • , D. Caprioli
  • , P. Chandra
  • , M. R. Drout
  • , D. Frederiks
  • , C. Frohmaier
  • , K. H. Hurley
  • , C. S. Kochanek
  • , M. MacLeod
  • , A. Meisner
  • , P. E. Nugent
  • , A. Ridnaia
  • , D. J. Sand
  • D. Svinkin, C. Ward, S. Yang, A. Baldeschi, I. V. Chilingarian, Y. Dong, C. Esquivia, W. Fong, C. Guidorzi, P. Lundqvist, D. Milisavljevic, K. Paterson, D. E. Reichart, B. Shappee, M. C. Stroh, S. Valenti, B. A. Zauderer, B. Zhang
  • Northwestern University
  • Canadian Institute for Advanced Research
  • United Arab Emirates University
  • National Centre for Radio Astrophysics India
  • Princeton University
  • Hartebeesthoek Radio Observatory
  • York University
  • University of Chicago
  • University of Toronto
  • Carnegie Observatories
  • Ioffe Institute
  • University of Portsmouth
  • University of California
  • Ohio State University
  • Harvard University
  • NSF's National Optical-Infrared Astronomy Research Laboratory
  • Lawrence Berkeley National Laboratory
  • The University of Arizona
  • University of Maryland
  • University of California Davis
  • INAF - Osservatorio Astronomico di Padova
  • Oskar Klein Centre
  • Stockholm University
  • Lomonosov Moscow State University
  • Purdue University
  • Hamilton College
  • Università di Ferrara
  • AlbaNova University Center
  • University of North Carolina
  • University of Hawaii at Manoa
  • National Science Foundation
  • University of Copenhagen
  • University of Nevada, Las Vegas

Research output: Contribution to journalArticlepeer-review

120   Link opens in a new tab Citations (SciVal)
141 Downloads (Pure)

Abstract

We present X-ray and radio observations of the Fast Blue Optical Transient CRTS-CSS161010 J045834-081803 (CSS161010 hereafter) at t = 69-531 days. CSS161010 shows luminous X-ray (L x ∼ 5 × 1039 erg s-1) and radio (L ν ∼ 1029 erg s-1 Hz-1) emission. The radio emission peaked at ∼100 days post-transient explosion and rapidly decayed. We interpret these observations in the context of synchrotron emission from an expanding blast wave. CSS161010 launched a mildly relativistic outflow with velocity Γβc ≥ 0.55c at ∼100 days. This is faster than the non-relativistic AT 2018cow (Γβc ∼ 0.1c) and closer to ZTF18abvkwla (Γβc ≥ 0.3c at 63 days). The inferred initial kinetic energy of CSS161010 (E k ⪆ 1051 erg) is comparable to that of long gamma-ray bursts, but the ejecta mass that is coupled to the mildly relativistic outflow is significantly larger (∼ 0.01-0.1 M⊙). This is consistent with the lack of observed γ-rays. The luminous X-rays were produced by a different emission component to the synchrotron radio emission. CSS161010 is located at ∼150 Mpc in a dwarf galaxy with stellar mass M * ∼ 107 M o&dot; and specific star formation rate sSFR ∼ 0.3 Gyr-1. This mass is among the lowest inferred for host galaxies of explosive transients from massive stars. Our observations of CSS161010 are consistent with an engine-driven aspherical explosion from a rare evolutionary path of a H-rich stellar progenitor, but we cannot rule out a stellar tidal disruption event on a centrally located intermediate-mass black hole. Regardless of the physical mechanism, CSS161010 establishes the existence of a new class of rare (rate < 0.4% of the local core-collapse supernova rate) H-rich transients that can launch mildly relativistic outflows.

Original languageEnglish
Article numberL23
JournalAstrophysical Journal Letters
Volume895
Issue number1
DOIs
Publication statusPublished - 20 May 2020

ASJC Scopus subject areas

  • Astronomy and Astrophysics
  • Space and Planetary Science

Fingerprint

Dive into the research topics of 'A Mildly Relativistic Outflow from the Energetic, Fast-rising Blue Optical Transient CSS161010 in a Dwarf Galaxy'. Together they form a unique fingerprint.

Cite this