On particle acceleration and transport in plasmas in the Galaxy: theory and observations
arXiv:2104.12428 · doi:10.1017/S0022377821000064
Abstract
Accelerated particles are ubiquitous in the Cosmos and play a fundamental role in many processes governing the evolution of the Universe at all scales, from the sub-AU ones relevant for the formation and evolution of stars and planets to the Mpc ones involved in Galaxy assembly. We reveal the presence of energetic particles in many classes of astrophysical sources thanks to their production of non-thermal radiation, and we detect them directly at Earth as Cosmic Rays. In the last two decades both direct and indirect observations have provided us a wealth of new, high quality data about Cosmic Rays and their interactions both in sources and during propagation, in the Galaxy and in the solar system. Some of the new data have confirmed existing theories about particle acceleration and propagation and their interplay with the environment in which they occur. Some others have brought about interesting surprises, whose interpretation is not straightforward within the standard framework and may require a change of paradigm in terms of our ideas about the origin of cosmic rays of different species or in different energy ranges. In this article, we will focus on Cosmic Rays of galactic origin, namely with energies below a few PeV, where a steepening is observed in the spectrum of energetic particles detected at the Earth. We review the recent observational findings and the current status of the theory about the origin and propagation of Galactic Cosmic Rays.
References in corpus (35)
- Observation of an anomalous positron abundance in the cosmic radiation
- Extended gamma-ray sources around pulsars constrain the origin of the positron flux at Earth
- Discrepant hardening observed in cosmic-ray elemental spectra
- Parametrization of gamma-ray production cross-sections for pp interactions in a broad proton energy range from the kinematic threshold to PeV energies
- TeV Gamma-Ray Sources from a Survey of the Galactic Plane with Milagro
- Spectral breaks as a signature of cosmic ray induced turbulence in the Galaxy
- Kinematic Distances to Molecular Clouds identified in the Galactic Ring Survey
- Observations of the young supernova remnant RX J1713.7-3946 with the Fermi Large Area Telescope
- Milagro Observations of Multi-TeV Emission from Galactic Sources in the Fermi Bright Source List
- Measurements of 0.2 to 20 GeV/n cosmic-ray proton and helium spectra from 1997 through 2002 with the BESS spectrometer
- 3D Turbulent Reconnection: Theory, Tests and Astrophysical Implications
- Origin of the Cosmic Ray Spectral Hardening
- A kinetic approach to cosmic ray induced streaming instability at supernova shocks
- Non linear particle acceleration at non-relativistic shock waves in the presence of self-generated turbulence
- Study of Nonthermal Emission from SNR RX J1713.7-3946 with Suzaku
- Galactic cosmic rays after the AMS-02 observations
- Gamma rays from molecular clouds
- The origin of galactic cosmic rays
- Gamma ray emission from SNR RX J1713.7-3946 and the origin of galactic cosmic rays
- AMS-02 beryllium data and its implication for cosmic ray transport
- Simulations of Ion Acceleration at Non-relativistic Shocks. III. Particle Diffusion
- Hadronic gamma-rays from RX J1713.7-3946?
- Identification of the TeV Gamma-ray Source ARGO J2031+4157 with the Cygnus Cocoon
- On the cosmic ray spectrum from type II Supernovae expanding in their red giant presupernova wind
- The transport of cosmic rays in self-excited magnetic turbulence
- The low rate of Galactic pevatrons
- Interpretation of the cosmic ray positron and antiproton fluxes
- Cosmic ray current-driven turbulence and mean-field dynamo effect
- Observations of the Unidentified TeV Gamma-Ray Source TeV J2032+4130 with the Whipple Observatory 10 m Telescope
- Signature of Energy Losses on the Cosmic Ray Electron Spectrum
- On the gamma-ray emission of W44 and its surroundings
- Effects of reacceleration and source grammage on secondary cosmic rays spectra
- The properties of non-thermal X-ray filaments in young supernova remnants
- Evidence of Cosmic-Ray Excess from Local Giant Molecular Clouds
- An Alternative Explanation of the Varying Boron to Carbon in Galactic Cosmic rays
Cited by in corpus (18)
- Ultra-High-Energy Cosmic Rays: The Intersection of the Cosmic and Energy Frontiers
- The Hunt for Pevatrons: The Case of Supernova Remnants
- Diffusion of cosmic rays in MHD turbulence with magnetic mirrors
- ASTRI Mini-Array Core Science at the Observatorio del Teide
- Low energy cosmic rays
- Cosmic ray streaming in the turbulent interstellar medium
- The LHAASO PeVatron bright sky: what we learned
- Probing the galactic cosmic-ray density with current and future -ray instruments
- Turbulence and particle energization in twisted flux ropes in solar-wind conditions
- Galactic Observatory Science with the ASTRI Mini-Array at the Observatorio del Teide
- PeV proton acceleration in Gamma-ray Binaries
- Cosmic ray diffusion in magnetic fields amplified by nonlinear turbulent dynamo
- X-ray emission from Westerlund 2 detected by SRG/ART-XC and Chandra: search for radiation of TeV leptons
- Exploring the high energy frontiers of the Milky Way with ground-based gamma-ray astronomy: PeVatrons and the quest for the origin of Galactic cosmic-rays
- An extreme particle accelerator powered by pulsar PSR J1849-0001
- Search for the Galactic accelerators of Cosmic-Rays up to the Knee with the Pevatron Test Statistic
- Diffusion of cosmic rays in MHD turbulence
- The expected potential of hadronic PeVatron searches with spectral -ray data from the Southern Wide-field Gamma-ray Observatory