High-Energy Neutrino Astrophysics: Status and Perspectives
arXiv:1111.0507 · doi:10.1016/j.ppnp.2011.12.001
Abstract
Neutrinos are unique cosmic messengers. Present attempts are directed to extend the window of cosmic neutrino observation from low energies (Sun, supernovae) to much higher energies. The aim is to study the most violent processes in the Universe which accelerate charged particles to highest energies, far beyond the reach of laboratory experiments on Earth. These processes must be accompanied by the emission of neutrinos. Neutrinos are electrically neutral and interact only weakly with ordinary matter; they thus propagate through the Universe without absorption or deflection, pointing back to their origin. Their feeble interaction, however, makes them extremely difficult to detect. The years 2008-2010 have witnessed remarkable steps in developing high energy neutrino telescopes. In 2010, the cubic-kilometre neutrino telescope IceCube at the South Pole has been completed. In the Mediterranean Sea the first-generation neutrino telescope ANTARES takes data since 2008, and efforts are directed towards KM3NeT, a telescope on the scale of several cubic kilometres. The next years will be key years for opening the neutrino window to the high energy Universe. With an instrumented volume of a cubic kilometre, IceCube is entering a region with realistic discovery potential. Discoveries or non-discoveries of IceCube will have a strong impact on the future of the field and possibly mark a "moment of truth". In this review, we discuss the scientific case for neutrino telescopes, describe the detection principle and its implementation in first- and second-generation installations and finally collect the existing physics results and the expectations for future detectors. We conclude with an outlook to alternative detection methods, in particular for neutrinos of extremely high energies.
84 pages, 49 figures. Accepted for publication in Progress in Particle and Nuclear Physics (PPNP)
References in corpus (51)
- The Spectrum of the Isotropic Diffuse Gamma-Ray Emission Derived From First-Year Fermi Large Area Telescope Data
- Fermi Large Area Telescope Bright Gamma-ray Source List
- High-energy neutrinos in the context of multimessenger physics
- Cosmic Rays from the Knee to the Highest Energies
- Cosmogenic Neutrinos: parameter space and detectabilty from PeV to ZeV
- Anisotropy and Corotation of Galactic Cosmic Rays
- Observations of the young supernova remnant RX J1713.7-3946 with the Fermi Large Area Telescope
- Methods for point source analysis in high energy neutrino telescopes
- Detection of Gamma Rays From a Starburst Galaxy
- Discovery of TeV Gamma-Ray Emission from the Cygnus Region of the Galaxy
- Observational Constraints on the Ultra-high Energy Cosmic Neutrino Flux from the Second Flight of the ANITA Experiment
- Measurement of the atmospheric neutrino energy spectrum from 100 GeV to 400 TeV with IceCube
- Uncertainties in Atmospheric Neutrino Fluxes
- The Large Scale Cosmic-Ray Anisotropy as Observed with Milagro
- Time-Integrated Searches for Point-like Sources of Neutrinos with the 40-String IceCube Detector
- Observations of the Askaryan Effect in Ice
- Measurement of the Anisotropy of Cosmic Ray Arrival Directions with IceCube
- Dynamical Feedback of Self-generated Magnetic Fields in Cosmic Ray Modified Shocks
- Gamma ray emission from SNR RX J1713.7-3946 and the origin of galactic cosmic rays
- Search for a Lorentz-violating sidereal signal with atmospheric neutrinos in IceCube
- Time Calibration of the ANTARES Neutrino Telescope
- New Limits on Dark Matter from Super-Kamiokande
- ARIANNA: A New Concept for UHE Neutrino Detection
- Search for a diffuse flux of high-energy with the ANTARES neutrino telescope
- Search for Relativistic Magnetic Monopoles with the ANTARES Neutrino Telescope
- The Pierre Auger Observatory I: The Cosmic Ray Energy Spectrum and Related Measurements
- The puzzling MILAGRO hot spots
- Prospects for identifying the sources of the Galactic cosmic rays with IceCube
- Detecting neutrino-transients with optical follow-up observations
- Neutrino mass hierarchy extraction using atmospheric neutrinos in ice
- Neutrinos from galactic sources of cosmic rays with known gamma-ray spectra
- The first search for extremely-high energy cosmogenic neutrinos with the IceCube Neutrino Observatory
- Perspectives of High Energy Neutrino Astronomy
- On the Detectability of High-Energy Galactic Neutrino Sources
- Sensitivity of an underwater Cerenkov km3 telescope to TeV neutrinos from Galactic Microquasars
- Atmospheric neutrinos in ice and measurement of neutrino oscillation parameters
- Reconstruction of Neutrino-Induced Hadronic and Electromagnetic Showers with the ANTARES Experiment
- Neutrino telescope modelling of Lorentz invariance violation in oscillations of atmospheric neutrinos
- Permafrost - An Alternative Target Material for Ultra High Energy Neutrino Detection?
- Gamma-ray binaries
- Mass Limits on Neutralino Dark Matter
- Supernova neutrino observations: What can we learn?
- Neutrino Triggered Target of Opportunity (NToO) test run with AMANDA-II and MAGIC
- IceTop - Cosmic Ray Physics with IceCube
- Searches for Magnetic Monopoles, Nuclearites and Q-balls
- The Status of VHE Gamma-Ray Astronomy
- Dark matter searches with IceCube
- Neutrino alert systems for Gamma Ray Bursts and Transient astronomical Sources
- Indirect detection of Dark matter with gamma-rays - status and perspectives
- Determination of the atmospheric neutrino fluxes from experimental data
- Sensitivity of JEM-EUSO to GRB Neutrinos
Cited by in corpus (31)
- White Paper on New Opportunities at the Next-Generation Neutrino Experiments (Part 1: BSM Neutrino Physics and Dark Matter)
- Multimessenger astronomy with gravitational waves and high-energy neutrinos
- Transition from galactic to extragalactic cosmic rays
- Neutrino Spectral Split in the Exact Many Body Formalism
- Towards High-Energy Neutrino Astronomy. A Historical Review
- Boosted Neutrinos and Relativistic Dark Particles as Messengers from Reheating
- Neutrino telescopes and high-energy cosmic neutrinos
- Event reconstruction techniques for the wide-angle air Cherenkov detector HiSCORE
- Tau energy loss and ultrahigh energy skimming tau neutrinos
- The ORCA Option for KM3NeT
- The highest energy neutrinos: first evidence for cosmic origin
- Liverpool Telescope 2: a new robotic facility for rapid transient follow-up
- Cosmogenic neutrino fluxes under the effect of active-sterile secret interactions
- UHECR: Signatures and Models
- Observable features in (ultra)high energy neutrinos due to active-sterile secret interactions
- Relic neutrinos: Antineutrinos of Primordial Nucleosynthesis
- High-Energy Neutrino Astronomy: A Glimpse of the Promised Land
- Relativistic Impulse Approximation in the Atomic Ionization Process induced by Millicharged Particles
- Recent results from the ANTARES neutrino telescope
- Neutrino Astronomy - A Review of Future Experiments
- Cherenkov light imaging in astroparticle physics
- Revealing Double White Dwarf Mergers with Multi-messenger Signals
- Spectral features of non-equilibrium antineutrinos of primordial nucleosynthesis
- Neutrinos from Cosmic Accelerators Including Magnetic Field and Flavor Effects
- Production of Tachyonic Neutrino in Matter
- Neutrino Interaction Physics in Neutrino Telescopes
- Connection between reactions and - oscillations via additional Higgs triplets
- IceCube: Neutrino Physics from GeV - PeV
- Status and Perspectives of Neutrino Physics
- High Energy Neutrinos and Cosmic Rays
- Aspects of astrophysical particle production and beyond the Standard Model phenomenology