Decoupling supernova and neutrino oscillation physics with LAr TPC detectors
arXiv:hep-ph/0404151 · doi:10.1088/1475-7516/2004/08/001
Abstract
Core collapse supernovae are a huge source of all flavor neutrinos. The flavor composition, energy spectrum and time structure of the neutrino burst from a galactic supernova can provide information about the explosion mechanism and the mechanisms of proto neutron star cooling. Such data can also give information about the intrinsic properties of the neutrino such as flavor oscillations. One important question is to understand to which extend can the supernova and the neutrino physics be decoupled in the observation of a single supernova. In this paper we discuss the possibility to probe the neutrino mixing angle \th13 and the type of mass hierarchy from the detection of supernova neutrinos with a liquid argon TPC detector. Moreover, describing the supernova neutrino emission by a set of five parameters (average energy of the different neutrino flavors, their relative luminosity and the total supernova binding energy), we quantitatively study how it is possible to constrain these parameters. A characteristic feature of the liquid argon TPC is the accessibility to four independent detection channels ((1) elastic scattering off electrons, (2) charged neutrino and (3) antineutrino and (4) neutral currents on argon nuclei) which have different sensitivities to electron-neutrino, anti-electron-neutrino and other neutrino flavors (muon and tau (anti)neutrinos). This allows to over-constrain the five supernova and the flavor mixing parameters and to some extent disentangle neutrino from supernova physics.
40 pages, 21 figures
References in corpus (11)
- First Results from KamLAND: Evidence for Reactor Anti-Neutrino Disappearance
- Measurement of the rate of nu_e + d --> p + p + e^- interactions produced by 8B solar neutrinos at the Sudbury Neutrino Observatory
- Indications of Neutrino Oscillation in a 250 km Long-baseline Experiment
- Constraints on Neutrino Oscillations Using 1258 Days of Super-Kamiokande Solar Neutrino Data
- Monte Carlo Study of Supernova Neutrino Spectra Formation
- Final results from the Palo Verde Neutrino Oscillation Experiment
- Superbeams versus Neutrino Factories
- Neutrino-nucleus reactions and nuclear structure
- LANNDD---A Massive Liquid Argon Detector for Proton Decay, Supernova and Solar Neutrino Studies, and a Neutrino Factory Detector
- Probing supernova physics with neutrino oscillations
- Inverting a Supernova: Neutrino Mixing, Temperatures and Binding Energy
Cited by in corpus (29)
- Supernova Neutrino Detection
- High-resolution supernova neutrino spectra represented by a simple fit
- Supernova Neutrino Burst Detection with the Deep Underground Neutrino Experiment
- Probing supernova shock waves and neutrino flavor transitions in next-generation water-Cherenkov detectors
- Large underground, liquid based detectors for astro-particle physics in Europe: scientific case and prospects
- Underground Neutrino Detectors for Particle and Astroparticle Science: the Giant Liquid Argon Charge Imaging ExpeRiment (GLACIER)
- Neutrino-nucleus reactions and their role for supernova dynamics and nucleosynthesis
- Damping of supernova neutrino transitions in stochastic shock-wave density profiles
- Probes of Lorentz Violation in Neutrino Propagation
- Supernova Relic Neutrinos in Liquid Argon detectors
- Supernova Relic Neutrinos and the Supernova Rate Problem: Analysis of Uncertainties and Detectability of ONeMg and Failed Supernovae
- (Down-to-)Earth matter effect in supernova neutrinos
- Gadolinium in water Cherenkov detectors improves detection of supernova
- Impact of sterile neutrinos on the early time flux from a galactic supernova
- Effect of Collective Flavor Oscillations on the Diffuse Supernova Neutrino Background
- An incremental approach to unravel the neutrino mass hierarchy and CP violation with a long-baseline Superbeam for large
- Parameter Degeneracy in Flavor-Dependent Reconstruction of Supernova Neutrino Fluxes
- Ideas for future liquid Argon detectors
- Indirect Detection of Dark Matter WIMPs in a Liquid Argon TPC
- Non-thermal neutrinos created by shock acceleration in successful and failed core-collapse supernova
- Neutrino detectors for future experiments
- Supernova neutrinos: production, propagation and oscillations
- Detecting supernovae neutrino with Earth matter effect
- Exploration of Possible Quantum Gravity Effects with Neutrinos II: Lorentz Violation in Neutrino Propagation
- First Demonstration of a Combined Light and Charge Pixel Readout on the Anode Plane of a LArTPC
- Future liquid Argon detectors
- Supernova neutrino signals by liquid Argon detector and neutrino magnetic moment
- Supernova electron-neutrino interactions with xenon in the nEXO detector
- Sensitivity Study of Supernova Neutrinos for Mass Hierarchy