Mu- and Tau-Neutrino Spectra Formation in Supernovae
arXiv:astro-ph/0105250 · doi:10.1086/323379
Abstract
The mu- and tau-neutrinos emitted from a proto-neutron star are produced by nucleonic bremsstrahlung N + N -> N + N + nu + nu-bar and pair annihilation e^+ + e^- -> nu + nu-bar, reactions which freeze out at the "energy sphere." Before escaping from there to infinity the neutrinos diffuse through the "scattering atmosphere," a layer where their main interaction is elastic scattering on nucleons nu + N -> N + nu. If these collisions are taken to be iso-energetic as in all numerical supernova simulations, the neutrino flux spectrum escaping to infinity depends only on the medium temperature T_ES and the thermally averaged optical depth tau_ES at the energy sphere. For tau_ES = 10-50 one finds for the spectral flux temperature of the escaping neutrinos T_flux = 0.5-0.6 T_ES. Including energy exchange (nucleon recoil) in nu + N -> N + nu can shift T_flux both up or down. Delta T_flux depends on tau_ES, on the scattering atmosphere's temperature profile, and on T_ES. Based on a numerical study we find that for typical conditions Delta T_flux/T_flux is between -10% and -20%, and even for extreme parameter choices does not exceed -30%. The exact value of Delta T_flux/T_flux is surprisingly insensitive to the assumed value of the nucleon mass, i.e. the exact efficiency of energy transfer between neutrinos and nucleons is not important as long as it can occur at all. Therefore, calculating the nu_mu and nu_tau spectra does not seem to require a precise knowledge of the nuclear medium's dynamical structure functions.
30 pages, 24 figures, Revised version with several clarifications in the text, no changes of substance
Cited by in corpus (81)
- Explosion Mechanisms of Core-Collapse Supernovae
- Monte Carlo Study of Supernova Neutrino Spectra Formation
- Nuclear weak-interaction processes in stars
- Neutrino-driven winds from neutron star merger remnants
- Two-dimensional hydrodynamic core-collapse supernova simulations with spectral neutrino transport. I. Numerical method and results for a 15 M_sun star
- Delayed neutrino-driven supernova explosions aided by the standing accretion-shock instability
- Shock Breakout in Core-Collapse Supernovae and its Neutrino Signature
- Weak magnetism for antineutrinos in supernovae
- Neutrino Opacities in Nuclear Matter
- A New Multi-Dimensional General Relativistic Neutrino Hydrodynamics Code for Core-Collapse Supernovae II. Relativistic Explosion Models of Core-Collapse Supernovae
- The next-generation liquid-scintillator neutrino observatory LENA
- Equation-of-State Dependent Features in Shock-Oscillation Modulated Neutrino and Gravitational-Wave Signals from Supernovae
- Self-sustained asymmetry of lepton-number emission: A new phenomenon during the supernova shock-accretion phase in three dimensions
- Symmetry energy impact in simulations of core-collapse supernovae
- Grand Unified Neutrino Spectrum at Earth: Sources and Spectral Components
- Neutrino Mixing and Nucleosynthesis in Core-Collapse Supernovae
- High-resolution supernova neutrino spectra represented by a simple fit
- Progress in the physics of massive neutrinos
- Exploiting the neutronization burst of a galactic supernova
- Probing axions with the neutrino signal from the next galactic supernova
- Electron Neutrino Pair Annihilation: A New Source for Muon and Tau Neutrinos in Supernovae
- Neutrino scattering and flavor transformation in supernovae
- Neutrino spectra evolution during proto-neutron star deleptonization
- Flavor-dependent neutrino angular distribution in core-collapse supernovae
- Collisional triggering of fast flavor conversions of supernova neutrinos
- Probing the neutrino mass hierarchy with the rise time of a supernova burst
- Identifying Earth matter effects on supernova neutrinos at a single detector
- The Science of the Einstein Telescope
- A New Multi-Dimensional General Relativistic Neutrino Hydrodynamics Code for Core-Collapse Supernovae IV. The Neutrino Signal
- Neutrino Emission from Supernovae
- What Can Be Learned with a Lead-Based Supernova-Neutrino Detector?
- Detecting the Neutrino Mass Hierarchy with a Supernova at IceCube
- Earth matter effects in supernova neutrinos: Optimal detector locations
- Supernova neutrinos and nucleosynthesis
- Evolution of collisional neutrino flavor instabilities in spherically symmetric supernova models
- An advanced leakage scheme for neutrino treatment in astrophysical simulations
- Supernova Simulations Confront SN 1987A Neutrinos
- Thermodynamics conditions of matter in the neutrino decoupling region during neutron star mergers
- Neutrino pair annihilation above merger remnants: implications of a long-lived massive neutron star
- Supernova signals of light dark matter
- Neutrinos and nucleosynthesis of elements
- Role of medium modifications for neutrino-pair processes from nucleon-nucleon bremsstrahlung - Impact on the protoneutron star deleptonization
- Neutrino Spectrum from SN 1987A and from Cosmic Supernovae
- Neutrino-pair emission from nuclear de-excitation in core-collapse supernova simulations
- Probing supernova physics with neutrino oscillations
- Impact of sterile neutrinos on the early time flux from a galactic supernova
- New analysis of the SN 1987A neutrinos with a flexible spectral shape
- Stellar probes of dark sector-photon interactions
- Model-independent Astrophysical Constraints on Leptophilic Dark Matter in the Framework of Tsallis Statistics
- Impact of Nucleon-Nucleon Bremsstrahlung Rates Beyond One-Pion Exchange
- Fast neutrino flavor conversions in a supernova: Emergence, evolution, and effects
- Supernova Neutrinos, Neutrino Oscillations, and the Mass of the Progenitor Star
- Entanglement in three-flavor collective neutrino oscillations
- Parameter Degeneracy in Flavor-Dependent Reconstruction of Supernova Neutrino Fluxes
- Heavy Nuclei as Thermal Insulation for Proto-Neutron Stars
- Neutrino Signatures From Young Neutron Stars
- Physics with Supernovae
- MODA: a new algorithm to compute optical depths in multi-dimensional hydrodynamic simulations
- Supernova constraints on an axion-photon-dark photon interaction
- Supernova Limits on Muonic Dark Forces
- Comprehensive Analyses of the Neutrino-Process in the Core-collapsing Supernova
- Neutrino Oscillation in Magnetized Gamma-Ray Burst Fireball
- Chiral effective field theory description of neutrino nucleon-nucleon Bremsstrahlung in supernova matter
- Supernova Neutrino Oscillations
- Signatures of Supernova Neutrino Oscillations into Extra Dimensions
- Realistic Earth matter effects and a method to acquire information about small θ_{13} in the detection of supernova neutrinos
- Can there be neutrino oscillation in Gamma-Ray Bursts fireball ?
- Exploiting stellar explosion induced by the QCD phase transition in large-scale neutrino detectors
- Neutrino oscillations in magnetically driven supernova explosions
- Supernova neutrinos: production, propagation and oscillations
- Neutrino Acceleration by Bulk Matter Motion and Explosion Mechanism of Gamma-Ray Bursts
- Discovering supernova-produced dark matter with directional detectors
- Kompaneets equation for neutrinos: Application to neutrino heating in supernova explosions
- Propagation of Neutrinos through Magnetized Gamma-Ray Burst Fireball
- Exploring entanglement and spectral split correlations in three-flavor collective neutrino oscillations
- Sensitivity to Supernovae Average Temperature with Neutral Current Interactions in DUNE
- Stellar energy loss rates in the pair-annihilation process beyond the standard model
- Neutrinos, Weak Interactions, and r-process Nucleosynthesis
- Neutrino-Neutron Scattering Opacities in Supernova Matter
- Distinguishing Dirac and Majorana Neutrinos: Resonant Spin-Flavor Precession of GeV-Scale Astrophysical Transients
- Supernova Detection at SNOLAB