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Extended gamma-ray sources around pulsars constrain the origin of the positron flux at Earth

  • A. U. Abeysekara
    ,
  • A. Albert
    ,
  • R. Alfaro
    ,
  • C. Alvarez
    ,
  • J. D. Álvarez
    ,
  • R. Arceo
*Corresponding author for this work
  • University of Utah
    ,
  • Los Alamos National Laboratory
    ,
  • Universidad Nacional Autónoma de México
    ,
  • Universidad Autonoma de Chiapas
    ,
  • Universidad Michoacana de San Nicolas de Hidalgo
    ,
  • Michigan Technological University
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Abstract

The unexpectedly high flux of cosmic-ray positrons detected at Earth may originate from nearby astrophysical sources, dark matter, or unknown processes of cosmic-ray secondary production. We report the detection, using the High-Altitude Water Cherenkov Observatory (HAWC), of extended tera–electron volt gamma-ray emission coincident with the locations of two nearby middle-aged pulsars (Geminga and PSR B0656+14). The HAWC observations demonstrate that these pulsars are indeed local sources of accelerated leptons, but the measured tera–electron volt emission profile constrains the diffusion of particles away from these sources to be much slower than previously assumed. We demonstrate that the leptons emitted by these objects are therefore unlikely to be the origin of the excess positrons, which may have a more exotic origin.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 911-914 (4 pages)

Journal (Volume, Issue Number)

Science (Volume 358, Issue 6365)

Publication milestones

  • Published - 17/11/2017

Publication status

Published - 17/11/2017

ISSN

0036-8075

Publication IDs

  • Scopus: 85034022123
  • PubMed: 29146808

Funding Details

We acknowledge the support from the U.S. National Science Foundation (NSF); the U.S. Department of Energy Office of High-Energy Physics; the Laboratory Directed Research and Development program of Los Alamos National Laboratory; Consejo Nacional de Ciencia y Tecnología, México (grants 271051, 232656, 260378, 179588, 239762, 254964, 271737, 258865, 243290, 132197, and 281653) (Cátedras 873, 1563); Laboratorio Nacional HAWC de rayos gamma; L'Oreal Fellowship for Women in Science 2014; Red HAWC, México; DGAPA-UNAM (Dirección General Asuntos del Personal Académico–Universidad Nacional Autónoma de México; grants IG100317, IN111315, IN111716-3, IA102715, 109916, and IA102917); VIEP-BUAP (Vicerrectoría de Investigación y Estudios de Posgrado–Benemérita Universidad Autónoma de Puebla); PIFI (Programa Integral de Fortalecimiento Institucional) 2012 and 2013; PROFOCIE (Programa de Fortalecimiento de la Calidad en Instituciones Educativas) 2014 and 2015; the University of Wisconsin Alumni Research Foundation; the Institute of Geophysics, Planetary Physics, and Signatures at Los Alamos National Laboratory; Polish Science Centre grant DEC-2014/13/B/ ST9/945; and Coordinación de la Investigación Científica de la Universidad Michoacana. Thanks to S. Delay, L. Díaz, and E. Murrieta for technical support. The data and software to reproduce Figs. 1 to 3 and the values of the gamma-ray flux parameters in Table 1 are available at https://data.hawc-observatory.org/datasets/ geminga2017/.
FundersFunding numbers
Planetary Physics
-
Polish Science Centre
DEC-2014/13/B/ ST9/945
U.S. Department of Energy Office of High-Energy Physics
-
U.S. National Science Foundation
-
NSF
1506145, 1606566
NSF
-
WARF
-
LDRD
-
LANL
-
NRIAG
-
CONACYT
239762, 271051, 254964, 258865, 281653, 260378, 132197, 179588, 232656, 243290, 271737
CONACYT
-
DGAPA, UNAM
IA102917, IA102715, IN111716-3, 109916, IN111315, IG100317
DGAPA, UNAM
-
CIC
-
VIEP, BUAP
-