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TeV γ-ray emission near globular cluster Terzan 5 as a probe of cosmic ray transport

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arxiv 2406.18160 v1 pith:DWGXKFUG submitted 2024-06-26 astro-ph.HE astro-ph.GA

TeV γ-ray emission near globular cluster Terzan 5 as a probe of cosmic ray transport

classification astro-ph.HE astro-ph.GA
keywords scatteringclustercosmicgammadirectraysconstraintsdisplaced
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Cosmic rays travelling through interstellar space have their propagation directions repeatedly scattered by fluctuating interstellar magnetic fields. The nature of this scattering is a major unsolved problem in astrophysics, one that has resisted solution largely due to a lack of direct observational constraints on the scattering rate. Here we show that very high-energy $\gamma$-ray emission from the globular cluster Terzan 5, which has unexpectedly been found to be displaced from the cluster, presents a direct probe of this process. We show that this displacement is naturally explained by cosmic rays accelerated in the bow shock around the cluster propagating a finite distance before scattering processes re-orient enough of them towards Earth to produce a detectable $\gamma$-ray signal. The angular distance between the cluster and the signal places tight constraints on the scattering rate, which we show are consistent with a model whereby scattering is primarily due to excitation of magnetic waves by the cosmic rays themselves. The analysis method we develop here will make it possible to use sources with similarly displaced non-thermal X-ray and TeV $\gamma$-ray signals as direct probes of cosmic ray scattering across a range of Galactic environments.

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Cited by 1 Pith paper

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  1. Spirited Away: Advective Loss of Cosmic Rays into the Milky Way's Circumgalactic Medium Explains the Large Magellanic Cloud's Low Gamma-ray Luminosity

    astro-ph.HE 2026-07 conditional novelty 6.0

    Cosmic rays advected out of the Large Magellanic Cloud by its passage through the Milky Way's circumgalactic medium explain the galaxy's low gamma-ray luminosity.