Linear Analysis of Fast-Pairwise Collective Neutrino Oscillations in Core-Collapse Supernovae based on the Results of Boltzmann Simulations
arXiv:1902.07467 · doi:10.1103/PhysRevD.99.103011
Abstract
Neutrinos are densely populated deep inside the core of massive stars after their gravitational collapse to produce supernova explosions and form compact stars such as neutron stars (NS) and black holes (BH). It has been considered that they may change their flavor identities through so-called fast-pairwise conversions induced by mutual forward scatterings. If that is really the case, the dynamics of supernova explosion will be influenced, since the conversion may occur near the neutrino sphere, from which neutrinos are effectively emitted. In this paper, we conduct a pilot study of such possibilities based on the results of fully self-consistent, realistic simulations of a core-collapse supernova explosion in two spatial dimensions under axisymmetry. As we solved the Boltzmann equations for neutrino transfer in the simulation not as a post-process but in real time, the angular distributions of neutrinos in momentum space for all points in the core at all times are available, a distinct feature of our simulations. We employ some of these distributions extracted at a few selected points and times from the numerical data and apply linear analysis to assess the possibility of the conversion. We focus on the vicinity of the neutrino sphere, where different species of neutrinos move in different directions and have different angular distributions as a result. This is a pilot study for a more thorough survey that will follow soon. We find no positive sign of conversion unfortunately at least for the spatial points and times we studied in this particular model. We hence investigate rather in detail the condition for the conversion by modifying the neutrino distributions rather arbitrarily by hand.
25 pages, 25 figures, Accepted for publication in PRD
References in corpus (11)
- Simulation of Coherent Non-Linear Neutrino Flavor Transformation in the Supernova Environment I: Correlated Neutrino Trajectories
- Fast Pairwise Conversion of Supernova Neutrinos: A Dispersion-Relation Approach
- Role of dense matter in collective supernova neutrino transformations
- The multi-angle instability in dense neutrino systems
- Fast neutrino flavor conversions near the supernova core with realistic flavor-dependent angular distributions
- Self-induced decoherence in dense neutrino gases
- Fast flavor conversions of supernova neutrinos: Classifying instabilities via dispersion relations
- Three-dimensional Boltzmann-Hydro code for core-collapse in massive stars I. special relativistic treatments
- Collective neutrinos oscillation in matter and CP-violation
- Supernova neutrino halo and the suppression of self-induced flavor conversion
- Stimulated neutrino transformation through turbulence on a changing density profile and application to supernovae
Cited by in corpus (57)
- New Developments in Flavor Evolution of a Dense Neutrino Gas
- Neutrino oscillations in supernovae: angular moments and fast instabilities
- Neutrino Fast Flavor Conversions in Neutron-star Post-Merger Accretion Disks
- Fast neutrino flavor instability and neutrino flavor lepton number crossings
- Fast collective neutrino oscillations inside the neutrino sphere in core-collapse supernovae
- A new possibility of the fast neutrino-flavor conversion in the pre-shock region of core-collapse supernova
- Fast Neutrino Flavor Conversion Modes in Multidimensional Core-collapse Supernova Models: the Role of the Asymmetric Neutrino Distributions
- Fast-pairwise collective neutrino oscillations associated with asymmetric neutrino emissions in core-collapse supernova
- Fast Neutrino Flavor Conversion in Core-Collapse Supernovae: A Parametric Study in 1D Models
- The Neutrino Fast Flavor Instability in Three Dimensions
- Particle-in-cell Simulation of the Neutrino Fast Flavor Instability
- Fast oscillations, collisionless relaxation, and spurious evolution of supernova neutrino flavor
- Neutrino Flavor Pendulum Reloaded: The Case of Fast Pairwise Conversion
- Neutrino Flavor Conversions in High-Density Astrophysical and Cosmological Environments
- Simple method for determining asymptotic states of fast neutrino-flavor conversion
- Fast Neutrino Flavor Conversion at Late Time
- Fast neutrino flavor conversions in one-dimensional core-collapse supernova models with and without muon creation
- Prospects of fast flavor neutrino conversion in rotating core-collapse supernovae
- Collisional instabilities of neutrinos and their interplay with fast flavor conversion in compact objects
- Evaluating approximate asymptotic distributions for fast neutrino flavor conversions in a periodic 1D box
- Dynamics of fast neutrino flavor conversions with scattering effects: a detailed analysis
- Fast flavor instabilities and the search for neutrino angular crossings
- The three flavor revolution in fast pairwise neutrino conversion
- Neutrino Flavor Conversion, Advection, and Collisions: Towards the Full Solution
- Flavor solitons in dense neutrino gases
- Collisional and Fast Neutrino Flavor Instabilities in Two-dimensional Core-collapse Supernova Simulation with Boltzmann Neutrino Transport
- Neutrino Oscillations in Core-Collapse Supernovae and Neutron Star Mergers
- Universality of the Neutrino Collisional Flavor Instability in Core Collapse Supernovae
- Neutrino fast flavor oscillations with moments: linear stability analysis and application to neutron star mergers
- New method for detecting fast neutrino flavor conversions in core-collapse supernova models with two-moment neutrino transport
- Fast neutrino flavor conversions in a supernova: Emergence, evolution, and effects
- Neutrino Decoupling Is Altered by Flavor Conversion
- Effects of energy-dependent scatterings on fast neutrino flavor conversions
- Supernova fast flavor conversions in 1+1D : Influence of mu-tau neutrinos
- Self-consistency in models of neutrino scattering and fast flavor conversion
- Asymptotic-state prediction for fast flavor transformation in neutron star mergers
- Robust integration of fast flavor conversions in classical neutrino transport
- Fast Flavor Transformations
- Applications of Machine Learning to Detecting Fast Neutrino Flavor Instabilities in Core-Collapse Supernova and Neutron Star Merger Models
- Symmetry breaking induced by pairwise conversion of neutrinos in compact sources
- Evolution and the quasistationary state of collective fast neutrino flavor conversion in three dimensions without axisymmetry
- Flavor conversions with energy-dependent neutrino emission and absorption
- Quasi-steady evolution of fast neutrino-flavor conversions
- Inference of neutrino flavor evolution through data assimilation and neural differential equations
- Angle-dependent in-situ fast flavor transformations in post-neutron star merger disks
- Inference offers a metric to constrain dynamical models of neutrino flavor transformation
- Muon-induced collisional flavor instability in core-collapse supernova
- Flavor Equilibration of Supernova Neutrinos: Exploring the Dynamics of Slow Modes
- Comparative Testing of Subgrid Models for Fast Neutrino Flavor Conversions in Core-collapse Supernova Simulations
- Systematic local simulations of fast neutrino flavor conversions with scattering effects
- On probing turbulence in core-collapse supernovae in upcoming neutrino detectors
- Testing common approximations of neutrino fast flavor conversion
- Occurrence of fast neutrino flavor conversions in QCD phase-transition supernovae
- Where, when and why: occurrence of fast-pairwise collective neutrino oscillation in three-dimensional core-collapse supernova models
- Asymmetric emissions of neutrinos in the cooling of rotating proto-neutron stars
- Neutrino transport with Monte Carlo method: II. Quantum Kinetic Equations
- Fast Neutrino Conversion in Hydrodynamic Simulations of Neutrino-Cooled Accretion Disks