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      Evidence for a new light spin-zero boson from cosmological gamma-ray propagation?

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          Abstract

          Recent findings by Imaging Atmospheric Cherenkov Telescopes indicate a large transparency of the Universe to gamma rays, which can be hardly explained within the current models of extragalactic background light. We show that the observed transparency is naturally produced by an oscillation mechanism -- which can occur inside intergalactic magnetic fields -- whereby a photon can become a new spin-zero boson with mass m << 10^(-10) eV. Because the latter particle travels unimpeded throughout the Universe, photons can reach the observer even if the distance from the source considerably exceeds their mean free path. We compute the expected flux of gamma rays from blazar 3C279 at different energies. Our predictions can be tested in the near future by the gamma-ray telescopes H.E.S.S., MAGIC, CANGAROO and VERITAS. Moreover, our result provides an important observational test for models of dark energy wherein quintessence is coupled to the photon through an effective dimension-five operator.

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          Author and article information

          Journal
          30 July 2007
          2007-12-19
          Article
          10.1103/PhysRevD.76.121301
          0707.4312
          c8c4baa2-5d13-4d68-9d10-28d2d2bedc2f
          History
          Custom metadata
          Phys.Rev.D76:121301,2007
          4 pages, 1 figure
          astro-ph hep-ex hep-ph

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