Measuring the Local Diffusion Coefficient with H.E.S.S. Observations of Very High-Energy Electrons
arXiv:1711.07482 · doi:10.1103/PhysRevD.98.083009
Abstract
The HAWC Collaboration has recently reported the detection of bright and spatially extended multi-TeV gamma-ray emission from Geminga, Monogem, and a handful of other nearby, middle-aged pulsars. The angular profile of the emission observed from these pulsars is surprising, in that it implies that cosmic-ray diffusion is significantly inhibited within ~25 pc of these objects, compared to the expectations of standard Galactic diffusion models. This raises the important question of whether the diffusion coefficient in the local interstellar medium is also low, or whether it is instead better fit by the mean Galactic value. Here, we utilize recent observations of the cosmic-ray electron spectrum (extending up to ~20 TeV) by the H.E.S.S. Collaboration to show that the local diffusion coefficient cannot be as low as it is in the regions surrounding Geminga and Monogem. Instead, we conclude that cosmic rays efficiently diffuse through the bulk of the local interstellar medium. Among other implications, this further supports the conclusion that pulsars significantly contribute to the observed positron excess.
11 pages, 3 figures, To Be Submitted to JCAP
References in corpus (16)
- A Theory of Dark Matter
- Extended gamma-ray sources around pulsars constrain the origin of the positron flux at Earth
- Searching for Dark Matter Annihilation in Recently Discovered Milky Way Satellites with Fermi-LAT
- Cosmic-ray positron fraction measurement from 1 to 30 GeV with AMS-01
- The origin of the positron excess in cosmic rays
- On possible interpretations of the high energy electron-positron spectrum measured by the Fermi Large Area Telescope
- Pulsars versus Dark Matter Interpretation of ATIC/PAMELA
- A Comprehensive Search for Dark Matter Annihilation in Dwarf Galaxies
- Testing astrophysical models for the PAMELA positron excess with cosmic ray nuclei
- Self-Generated Cosmic-Ray Confinement in TeV Halos: Implications for TeV Gamma-Ray Emission and the Positron Excess
- Lessons from HAWC PWNe observations: the diffusion constant is not a constant; Pulsars remain the likeliest sources of the anomalous positron fraction; Cosmic rays are trapped for long periods of time in pockets of inefficient diffusion
- Two-zone diffusion of electrons and positrons from Geminga explains the positron anomaly
- Constraining the properties of the magnetic turbulence in the Geminga region using HAWC -ray data
- Diffuse γ-ray emission from self-confined cosmic rays around Galactic sources
- Charge Asymmetric Cosmic Ray Signals From Dark Matter Decay
- B/C ratio and the PAMELA positron excess
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- Les Houches Lectures on Indirect Detection of Dark Matter
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- The Physics of Pulsar Halos: Research Progress and Prospect
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- Undiscovered pulsar in the Local Bubble as an explanation of the local high energy cosmic ray all-electron spectrum
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- Inefficient cosmic ray diffusion around Vela X : constraints from H.E.S.S. observations of very high-energy electrons
- Probing Flavor Structure of Cosmic Ray Spectrum and Implications for Dark Matter Indirect Searches
- Indirect Detection of Dark Matter in the Galaxy
- Constraining the Milky Way's Pulsar Population with the Cosmic-Ray Positron Fraction
- Geminga contribution to the cosmic-ray positron excess according to the gamma-ray observations
- PHECT: A lightweight computation tool for pulsar halo emission
- Investigating the emission signatures of pulsar halo candidate HESS J1813-126