Astrophysical Origins of Ultrahigh Energy Cosmic Rays
arXiv:astro-ph/0402371 · doi:10.1088/0034-4885/67/9/R03
Abstract
In the first part of this review we discuss the basic observational features at the end of the cosmic ray energy spectrum. We also present there the main characteristics of each of the experiments involved in the detection of these particles. We then briefly discuss the status of the chemical composition and the distribution of arrival directions of cosmic rays. After that, we examine the energy losses during propagation, introducing the Greisen-Zaptsepin-Kuzmin (GZK) cutoff, and discuss the level of confidence with which each experiment have detected particles beyond the GZK energy limit. In the second part of the review, we discuss astrophysical environments able to accelerate particles up to such high energies, including active galactic nuclei, large scale galactic wind termination shocks, relativistic jets and hot-spots of Fanaroff-Riley radiogalaxies, pulsars, magnetars, quasar remnants, starbursts, colliding galaxies, and gamma ray burst fireballs. In the third part of the review we provide a brief summary of scenarios which try to explain the super-GZK events with the help of new physics beyond the standard model. In the last section, we give an overview on neutrino telescopes and existing limits on the energy spectrum and discuss some of the prospects for a new (multi-particle) astronomy. Finally, we outline how extraterrestrial neutrino fluxes can be used to probe new physics beyond the electroweak scale.
Higher resolution version of Fig. 7 is available at http://www.angelfire.com/id/dtorres/down3.html. Solicited review article prepared for Reports on Progress in Physics, final version
References in corpus (5)
- The Status of the H.E.S.S. Project
- Detection of Sub-TeV Gamma-Rays from the Galactic Center Direction by CANGAROO-II
- Confirmation of strong magnetic field amplification and nuclear cosmic ray acceleration in SN 1006
- High-energy gamma-rays from stellar associations
- Luminous infrared galaxies as plausible gamma-ray sources for GLAST and IACTs
Cited by in corpus (63)
- Cosmic Rays from the Knee to the Highest Energies
- Constraints from the first LHC data on hadronic event generators for ultra-high energy cosmic-ray physics
- Ultra-High-Energy Cosmic Rays
- Limit on the diffuse flux of ultra-high energy tau neutrinos with the surface detector of the Pierre Auger Observatory
- Theoretical modelling of the diffuse emission of gamma-rays from extreme regions of star formation: The case of Arp 220
- High energy gamma-ray emission from the starburst nucleus of NGC 253
- A QCD analogy for quantum gravity
- Physical conditions in potential sources of ultra-high-energy cosmic rays: Updated Hillas plot and radiation-loss constraints
- Prompt GeV-TeV Emission of Gamma-Ray Bursts Due to High-Energy Protons, Muons and Electron-Positron Pairs
- High-energy neutrinos from astrophysical accelerators of cosmic ray nuclei
- Enhanced Cosmological GRB Rates and Implications for Cosmogenic Neutrinos
- Neutrinos: the Key to UHE Cosmic Rays
- Ultra-High Energy Cosmic Rays, Spiral galaxies and Magnetars
- Shower Power: Isolating the Prompt Atmospheric Neutrino Flux Using Electron Neutrinos
- Ultra-high energy Neutrinos from Centaurus A and the Auger hot spot
- In Search for Extraterrestrial High Energy Neutrinos
- Cosmic rays in galactic and extragalactic magnetic fields
- Ultrahigh Energy Nuclei Propagation in a Structured, Magnetized Universe
- Cosmic Ray Composition and Energy Spectrum from 1-30 PeV Using the 40-String Configuration of IceTop and IceCube
- A theory of Cosmic Rays
- IceHEP High Energy Physics at the South Pole
- New physics of strong interaction and Dark Universe
- Distortion of Ultra-high-energy sky by Galactic Magnetic Field
- Probing Neutrino Dark Energy with Extremely High-Energy Cosmic Neutrinos
- Ultra-High-Energy Cosmic Rays from the Radio Lobes of AGNs
- Implications to Sources of Ultra-high-energy Cosmic Rays from their Arrival Distribution
- Does Galactic Magnetic Field Disturb the Correlation of the Highest Energy Cosmic Rays with their Sources?
- Inductive acceleration of UHECRs in sheared relativistic jets
- On ultra high energy cosmic rays and their resultant gamma rays
- Global anisotropy of arrival directions of ultra-high-energy cosmic rays: capabilities of space-based detectors
- A comparative study of correlations between arrival directions of ultra-high-energy cosmic rays and positions of their potential astrophysical sources
- Evidence Against Astrophysical Dyadospheres
- On ultra-high energy cosmic rays: origin in AGN jets and transport in expanding Universe
- Magnetized Sources of Ultra-high Energy Nuclei and Extragalactic Origin of the Ankle
- Vortices, Infrared effects and Lorentz Invariance Violation
- White paper on EUSO-SPB2
- Clustering properties of ultrahigh energy cosmic rays and the search for their astrophysical sources
- High-Energy and Ultra-High-Energy Neutrinos from Primordial Black Holes
- Angular correlation between IceCube high-energy starting events and starburst sources
- First bounds on the very high energy gamma-ray emission from Arp 220
- A reduction in the UHE neutrino flux due to neutrino spin precession
- Estimate of the correlation signal between cosmic rays and BL Lacs in future data
- Search for a correlation between ANTARES neutrinos and Pierre Auger Observatory UHECRs arrival directions
- On the acceleration of Ultra-High-Energy Cosmic Rays
- Cosmic rays at ultra high energies (Neutrinos!)
- Feasibility of Determining Diffuse Ultra-High Energy Cosmic Neutrino Flavor Ratio through ARA Neutrino Observatory
- Testing the isotropy of high energy cosmic rays using spherical needlets
- Origin of ultra-high energy cosmic rays in the era of Auger and Telescope Array
- A Gravitational Mechanism for the Acceleration of Ultrarelativistic Particles
- SUSY Resonances from UHE neutralinos in Neutrino Telescopes and in the Sky
- Axion-like Particle Effects on Photon Polarization in High-Energy Astrophysics
- Physical conditions in nearby active galaxies correlated with ultra-high-energy cosmic rays detected by the Pierre Auger Observatory
- Learning the Composition of Ultra High Energy Cosmic Rays
- Collective effects of stellar winds and unidentified gamma-ray sources
- The Pierre Auger Observatory: Results on Ultra-High Energy Cosmic Rays
- Ultrahigh energy cosmic rays from collisional annihilation revisited
- Non-parametric Bayesian reconstruction of Galactic magnetic fields using Information Field Theory: The inclusion of line-of-sight information in ultra-high energy cosmic ray backtracking
- On The Injection Spectrum of Ultrahigh Energy Cosmic Rays in the Top-Down Scenario
- High Energy Neutrinos as a Probe for New Physics and Astrophysics
- Magnetic deflections and possible sources of the ultra-high-energy cosmic rays in the AGASA-HiRes-Yakutsk cluster
- UHECR Acceleration in Dark Matter Filaments of Cosmological Structure Formation
- Strongly Interacting Neutrinos as the Highest Energy Cosmic Rays: A Quantitative Analysis
- Strongly Interacting Astrophysical Neutrinos