TeV Electron Spectrum for Probing Cosmic-Ray Escape from a Supernova Remnant
arXiv:1009.1142 · doi:10.1088/0004-637X/729/2/93
Abstract
One of the most essential but uncertain processes for producing cosmic-rays (CRs) and their spectra is how accelerated particles escape into the interstellar space. We propose that the CR electron spectra at >~TeV energy can provide a direct probe of the CR escape complementary to the CR nuclei and gamma-rays. We calculate the electron spectra from a young pulsar embedded in the supernova remnant (SNR), like Vela, taking into account the energy-dependent CR escape. SNRs would accelerate and hence confine particles with energy up to 10^{15.5}eV. Only energetic particles can escape first, while the lower energy particles are confined and released later. Then the observed electron spectrum should have a low energy cutoff whose position marks the age of the pulsar/SNR. The low energy cutoff is observable in the energy window, where other contaminating sources are expected to be few due to the fast cooling of electrons. The spectrum looks similar to a dark matter annihilation line if the low energy cutoff is close to the high energy intrinsic or cooling break. The future experiments such as CALET and CTA are capable of directly detecting the CR escape features toward revealing the origin of CRs.
8 pages, 5 figures, accepted for publication in ApJ
Cited by in corpus (19)
- Escape of cosmic-ray electrons from supernova remnants
- Can we explain AMS-02 antiproton and positron excesses simultaneously by nearby supernovae without pulsars nor dark matter?
- Energy Calibration of CALET Onboard the International Space Station
- Cosmic-Ray Hardenings in the Light of AMS-02
- GW150914-like Black Holes as Galactic High-Energy Sources
- Alfven Wave Amplification and Self-Containment of Cosmic-Rays Escaping from a Supernova Remnant
- Features in the Spectrum of Cosmic-Ray Positrons from Pulsars
- TeV cosmic ray electrons from millisecond pulsars
- Direct Measurement of the Spectral Structure of Cosmic-Ray Electrons+Positrons in the TeV Region with CALET on the International Space Station
- Utilizing cosmic-ray positron and electron observations to probe the averaged properties of Milky Way pulsars
- On the point source approximation of nearby cosmic-ray sources
- Anomalous Galactic Cosmic Rays in the Framework of AMS-02
- Monte Carlo Study of Electron and Positron Cosmic-Ray Propagation with the CALET Spectrum
- Revisiting GeV-scale annihilating dark matter with the AMS-02 positron fraction
- Extracting the size of the cosmic electron-positron anomaly
- Origin of Spectral Hardening of Secondary Cosmic-Ray Nuclei
- Observing Signals of Spectral Features in the Cosmic-Ray Positrons and Electrons from Milky Way Pulsars
- Decaying Fermionic Dark Matter Search with CALET
- Possible counterpart signal of the Fermi bubbles at the cosmic-ray positrons