The Enigma of the Highest Energy Particles of Nature
arXiv:astro-ph/0210049 · doi:10.1016/S0003-4916(02)00021-0
Abstract
Historically cosmic rays have always been at the intersection of astrophysics with particle physics. This is still and especially true in current days where experimenters routinely observe atmospheric showers from particles whose energies reach macroscopic values up to about 50 Joules. This dwarfs energies achieved in the laboratory by about eight orders of magnitude in the detector frame and three orders of magnitude in the center of mass. While the existence of these highest energy cosmic rays does not necessarily testify physics not yet discovered, their macroscopic energies likely links their origin to the most energetic processes in the Universe. Explanations range from conventional shock acceleration to particle physics beyond the Standard Model and processes taking place at the earliest moments of our Universe. While motivation for some of the more exotic scenarios may have diminished by newest data, conventional shock acceleration scenarios remain to be challenged by the apparent isotropy of cosmic ray arrival directions which may not be easy to reconcile with a highly structured and magnetized Universe. Fortunately, many new experimental activities promise a strong increase of statistics at the highest energies and a combination with gamma-ray and neutrino astrophysics will put strong constraints on all these theoretical models. This short review is far from complete and instead presents a selection of aspects regarded by the author as interesting and/or promising for the future.
31 latex pages, 7 ps figures; draft of a review for Annals of Physics, Comments, suggestions for improvements are highly appreciated
Cited by in corpus (12)
- Detection and imaging of atmospheric radio flashes from cosmic ray air showers
- Cosmic Rays from the Knee to the Highest Energies
- A First Search for Cosmogenic Neutrinos with the ARIANNA Hexagonal Radio Array
- High Energy Physics in the Atmosphere: Phenomenology of Cosmic Ray Air Showers
- Air fluorescence measurements in the spectral range 300-420 nm using a 28.5 GeV electron beam
- Arrival Distribution of Ultra-High Energy Cosmic Rays: Prospects for the Future
- Ultra High Energy Cosmic Rays and de Sitter Vacua
- Ultra-high energy cosmic rays from Quark Novae
- Predictions for the flux of high-energy cosmogenic neutrinos and the influence of the extragalactic magnetic field
- Strings, Black Holes and the Extreme Energy Cosmic Rays
- Ultra High Energy Cosmic Rays from Sequestered X Bursts
- Ultrahigh Energy Cosmic Rays and Prompt TeV Gamma Rays from Gamma Ray Bursts