English

First HAWC Observations of the Sun Constrain Steady TeV Gamma-Ray Emission

High Energy Astrophysical Phenomena 2018-12-26 v2 Solar and Stellar Astrophysics High Energy Physics - Phenomenology

Abstract

Steady gamma-ray emission up to at least 200 GeV has been detected from the solar disk in the Fermi-LAT data, with the brightest, hardest emission occurring during solar minimum. The likely cause is hadronic cosmic rays undergoing collisions in the Sun's atmosphere after being redirected from ingoing to outgoing in magnetic fields, though the exact mechanism is not understood. An important new test of the gamma-ray production mechanism will follow from observations at higher energies. Only the High Altitude Water Cherenkov (HAWC) Observatory has the required sensitivity to effectively probe the Sun in the TeV range. Using three years of HAWC data from November 2014 to December 2017, just prior to the solar minimum, we search for 1--100 TeV gamma rays from the solar disk. No evidence of a signal is observed, and we set strong upper limits on the flux at a few 101210^{-12} TeV1^{-1} cm2^{-2} s1^{-1} at 1 TeV. Our limit, which is the most constraining result on TeV gamma rays from the Sun, is 10%\sim10\% of the theoretical maximum flux (based on a model where all incoming cosmic rays produce outgoing photons), which in turn is comparable to the Fermi-LAT data near 100 GeV. The prospects for a first TeV detection of the Sun by HAWC are especially high during solar minimum, which began in early 2018.

Keywords

Cite

@article{arxiv.1808.05620,
  title  = {First HAWC Observations of the Sun Constrain Steady TeV Gamma-Ray Emission},
  author = {A. Albert and R. Alfaro and C. Alvarez and R. Arceo and J. C. Arteaga-Velázquez and D. Avila Rojas and H. A. Ayala Solares and E. Belmont-Moreno and S. Y. BenZvi and C. Brisbois and K. S. Caballero-Mora and T. Capistràn and A. Carramiñana and S. Casanova and M. Castillo and J. Cotzomi and S. Coutiño de León and C. De León and E. De la Fuente and S. Dichiara and B. L. Dingus and M. A. DuVernois and J. C. Díaz-Vélez and K. Engel and O. Enríquez-Rivera and C. Espinoza and H. Fleischhack and N. Fraija and J. A. García-González and F. Garfias and M. M. González and J. A. Goodman and Z. Hampel-Arias and J. P. Harding and S. Hernandez and B. Hona and F. Hueyotl-Zahuantitla and P. Hüntemeyer and A. Iriarte and A. Jardin-Blicq and V. Joshi and S. Kaufmann and H. León Vargas and G. Luis-Raya and J. Lundeen and R. López-Coto and K. Malone and S. S. Marinelli and O. Martinez and I. Martinez-Castellanos and J. Martínez-Castro and P. Miranda-Romagnoli and E. Moreno and M. Mostafá and A. Nayerhoda and L. Nellen and M. Newbold and M. U. Nisa and R. Noriega-Papaqui and J. Pretz and E. G. Pérez-Pérez and Z. Ren and C. D. Rho and C. Rivière and D. Rosa-González and M. Rosenberg and E. Ruiz-Velasco and H. Salazar and F. Salesa Greus and A. Sandoval and M. Schneider and H. Schoorlemmer and M. Seglar Arroyo and G. Sinnis and A. J. Smith and P. Surajbali and I. Taboada and O. Tibolla and K. Tollefson and I. Torres and L. Villaseñor and T. Weisgarber and S. Westerhoff and I. G. Wisher and J. Wood and T. Yapici and A. Zepeda and H. Zhou and J. D. Álvarez and J. F. Beacom and R. K. Leane and T. Linden and K. C. Y. Ng and A. H. G. Peter and B. Zhou},
  journal= {arXiv preprint arXiv:1808.05620},
  year   = {2018}
}

Comments

14 pages, 6 figures. See also companion paper 1808.05624. Accepted for publication in Physical Review D