Autores
Luna García Rene
Martínez Castro Jesús Alberto
Título Observation of Anisotropy of TeV Cosmic Rays with Two Years of HAWC
Tipo Revista
Sub-tipo JCR
Descripción Astrophysical Journal
Resumen After two years of operation, the High-Altitude Water Cherenkov (HAWC) Observatory has analyzed the TeV cosmic-ray sky over an energy range between 2.0 and 72.8 TeV. The HAWC detector is a ground-based air-shower array located at high altitude in the state of Puebla, Mexico. Using 300 light-tight water tanks, it collects the Cherenkov light from the particles of extensive air showers from primary gamma rays and cosmic rays. This detection method allows for uninterrupted observation of the entire overhead sky (2~sr instantaneous, 8.5~sr integrated) in the energy range from a few TeV to hundreds of TeV. Like other detectors in the northern and southern hemisphere, HAWC observes an energy-dependent anisotropy in the arrival direction distribution of cosmic rays. The observed cosmic-ray anisotropy is dominated by a dipole moment with phase α≈40∘ and amplitude that slowly rises in relative intensity from 8×10−4 at 2 TeV to 14×10−4 around 30.3 TeV, above which the dipole decreases in strength. A significant large-scale (>60∘ in angular extent) signal is also observed in the quadrupole and octupole moments, and significant small-scale features are also present, with locations and shapes consistent with previous observations. Compared to previous measurements in this energy range, the HAWC cosmic-ray sky maps improve on the energy resolution and fit precision of the anisotropy. These data can be used in an effort to better constrain local cosmic-ray accelerators and the intervening magnetic fields.
Observaciones DOI: 10.3847/1538-4357/aad90c
Lugar Bristol
País Reino Unido
No. de páginas Article number 57
Vol. / Cap. v. 865 no. 1
Inicio 2018-09-20
Fin
ISBN/ISSN