Explanation of the knee-like feature in the DAMPE cosmic energy spectrum
arXiv:1711.10996 · doi:10.3847/1538-4357/aaa710
Abstract
The DArk Matter Particle Explorer (DAMPE), a space-based high precision cosmic ray detector, has just reported the new measurement of the total electron plus positron energy spectrum up to 4.6 TeV. A notable feature in the spectrum is the spectral break at TeV, with the spectral index softening from to . Such a feature is very similar to the knee at the cosmic nuclei energy spectrum. In this work we propose that the knee-like feature can be explained naturally by assuming that the electrons are accelerated at the supernova remnants (SNRs) and released when the SNRs die out with lifetime around years. The cut-off energy of those electrons have already decreased to several TeV due to radiative cooling, which may induce the observed TeV spectral break. Another possibility is that the break is induced by a single nearby old SNR. Such a scenario may bring a large electron flux anisotropy that is observable by the future detectors. We also show that a minor part of electrons escaping during the acceleration in young and nearby SNRs are able to contribute to several TeV or higher energy region of the spectrum.
23 pages, 4 figures, 2 tables
References in corpus (14)
- The ATNF Pulsar Catalogue
- Direct detection of a break in the teraelectronvolt cosmic-ray spectrum of electrons and positrons
- Extended gamma-ray sources around pulsars constrain the origin of the positron flux at Earth
- Analytical solutions for energy spectra of electrons accelerated by nonrelativistic shock-waves in shell type supernova remnants
- Milagro Observations of Multi-TeV Emission from Galactic Sources in the Fermi Bright Source List
- Galactic secondary positron flux at the Earth
- Pulsars versus Dark Matter Interpretation of ATIC/PAMELA
- Galactic electrons and positrons at the Earth:new estimate of the primary and secondary fluxes
- Pulsar-wind nebulae and magnetar outflows: observations at radio, X-ray, and gamma-ray wavelengths
- DA495 - an aging pulsar wind nebula
- Search for Cosmic-Ray Electron and Positron Anisotropies with Seven Years of Fermi Large Area Telescope Data
- Perspective on the cosmic-ray electron spectrum above TeV
- Cosmic Ray Origins in Supernova Blast Waves
- Flux Densities and Radio Polarization Characteristics of Two Vela-like Pulsars
Cited by in corpus (31)
- Two-zone diffusion of electrons and positrons from Geminga explains the positron anomaly
- Model-independent analysis of the DAMPE excess
- Origins of sharp cosmic-ray electron structures and the DAMPE excess
- Dark Matter Particle Explorer observations of high-energy cosmic ray electrons plus positrons and their physical implications
- Studying the Milky Way Pulsar Population with Cosmic-Ray Leptons
- Scalar dark matter interpretation of the DAMPE data with U(1) gauge interactions
- TeV dark matter and the DAMPE electron excess
- Flavor Structure of the Cosmic-Ray Electron/Positron Excesses at DAMPE
- Electron Flavored Dark Matter
- DAMPE squib? Significance of the 1.4 TeV DAMPE excess
- Prospects of type-II seesaw at future colliders in light of the DAMPE excess
- Bayesian analysis of the break in DAMPE lepton spectra
- Lepton-portal Dark Matter in Hidden Valley model and the DAMPE recent results
- The DAMPE excess and gamma-ray constraints
- Scalar dark matter explanation of the DAMPE data in the minimal Left-Right symmetric model
- DAMPE excess from decaying right-handed neutrino dark matter
- Ultrahigh-energy diffuse gamma-ray emission from cosmic-ray interactions with medium surrounding acceleration sources
- Pulsars Do Not Produce Sharp Features in the Cosmic-Ray Electron and Positron Spectra
- Electron and positron spectra in the three dimensional spatial-dependent propagation model
- Statistically study the optimal local sources for cosmic ray nuclei and electron
- Inefficient cosmic ray diffusion around Vela X : constraints from H.E.S.S. observations of very high-energy electrons
- DAMPE Excess from Leptophilic Vector Dark Matter: Model Independent Approach
- Two-mediator dark matter models and cosmic electron excess
- Implications of dark matter cascade decay from DAMPE, HESS, Fermi-LAT and AMS02 data
- Monte Carlo Study of Electron and Positron Cosmic-Ray Propagation with the CALET Spectrum
- Probing Flavor Structure of Cosmic Ray Spectrum and Implications for Dark Matter Indirect Searches
- A Strong Test of the Dark Matter Origin of the 1.4 TeV DAMPE Signal Using IceCube Neutrinos
- Explanations of the DAMPE high energy electron/positron spectrum in the dark matter annihilation and pulsar scenarios
- Reexamine the dark matter scenario accounting for the positron excess in a new cosmic ray propagation model
- Proposition of FSR Photon Suppression Employing a Two-Positron Decay Dark Matter Model to Explain Positron Anomaly in Cosmic Rays
- Research on electron and positron spectrum in the high-energy region based on the gluon condensation model