English

Detection of a Millimeter Flare From Proxima Centauri

Earth and Planetary Astrophysics 2018-03-14 v1 Solar and Stellar Astrophysics

Abstract

We present new analyses of ALMA 12-m and ACA observations at 233 GHz (1.3 mm) of the Proxima Centauri system with sensitivities of 9.5 and 47 μ\muJy beam1^{-1}, respectively, taken from 2017 January 21 through 2017 April 25. These analyses reveal that the star underwent a significant flaring event during one of the ACA observations on 2017 March 24. The complete event lasted for approximately 1 minute and reached a peak flux density of 100±4100\pm4 mJy, nearly a factor of 1000×1000\times brighter than the star's quiescent emission. At the flare peak, the continuum emission is characterized by a steeply falling spectral index with frequency, FνναF_\nu \propto \nu^\alpha with α=1.77±0.45\alpha = -1.77\pm0.45, and a lower limit on the fractional linear polarization of Q/I=0.19±0.02|Q/I| = 0.19\pm0.02. Since the ACA observations do not show any quiescent excess emission, we conclude that there is no need to invoke the presence of a dust belt at 141-4 AU. We also posit that the slight excess flux density of 101±9101\pm9 μ\muJy observed in the 12-m observations compared to the photospheric flux density of 74±474\pm4 μ\muJy extrapolated from infrared wavelengths may be due to coronal heating from continual smaller flares, as is seen for AU Mic, another nearby, well-studied, M dwarf flare star. If this is true, then the need for warm dust at 0.4\sim0.4 AU is also removed.

Keywords

Cite

@article{arxiv.1802.08257,
  title  = {Detection of a Millimeter Flare From Proxima Centauri},
  author = {Meredith A. MacGregor and Alycia J. Weinberger and David J. Wilner and Adam F. Kowalski and Steven R. Cranmer},
  journal= {arXiv preprint arXiv:1802.08257},
  year   = {2018}
}

Comments

7 pages, 3 figures; Submitted to ApJL 2017 December 22; Accepted to ApJL 2018 February 5

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