Flavor solitons in dense neutrino gases
arXiv:2303.12143 · doi:10.1103/PhysRevD.107.123024
Abstract
We consider a dense neutrino gas in the "fast-flavor limit" (vanishing neutrino masses). For the first time, we identify exact solutions of the nonlinear wave equation in the form of solitons. They can propagate with both sub- or superluminal speed, the latter not violating causality. The soliton with infinite speed is a homogeneous solution and coincides with the usual fast-flavor pendulum except that it swings only once instead of being periodic. The subluminal soliton in the static limit corresponds to a one-swing "spatial pendulum". A necessary condition for such solutions to exist is a ``crossed'' neutrino angle distribution. Based on the Nyquist criterion, we derive a new sufficient condition without solving the dispersion relation. The solitons are very fragile: they are as unstable as the homogeneous neutrino gas alone. Moreover, in the presence of matter, only the solution survives that is homogeneous in a frame comoving with the matter current. Generally, the matter effect cannot be eliminated by transformations in flavor space, but instead has a real physical impact.
12 pages, 8 figures, plus appendices; references added compared to v1, this version is identical to the published one
References in corpus (49)
- Fast Pairwise Conversion of Supernova Neutrinos: A Dispersion-Relation Approach
- New Developments in Flavor Evolution of a Dense Neutrino Gas
- Analysis of Collective Neutrino Flavor Transformation in Supernovae
- Neutrino oscillations in supernovae: angular moments and fast instabilities
- Self-induced decoherence in dense neutrino gases
- Fast flavor conversions of supernova neutrinos: Classifying instabilities via dispersion relations
- Fast neutrino flavor instability and neutrino flavor lepton number crossings
- Fast collective neutrino oscillations inside the neutrino sphere in core-collapse supernovae
- Fast Flavor Depolarization of Supernova Neutrinos
- 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
- Linear Analysis of Fast-Pairwise Collective Neutrino Oscillations in Core-Collapse Supernovae based on the Results of Boltzmann Simulations
- Fast Neutrino Flavor Conversion in Core-Collapse Supernovae: A Parametric Study in 1D Models
- Fast flavor oscillations in dense neutrino media with collisions
- On the characteristics of fast neutrino flavor instabilities in three-dimensional core-collapse supernova models
- Collective fast neutrino flavor conversions in a 1D box: Initial condition and long-term evolution
- Roles of fast neutrino-flavor conversion on the neutrino-heating mechanism of core-collapse supernova
- Particle-in-cell Simulation of the Neutrino Fast Flavor Instability
- Fast oscillations, collisionless relaxation, and spurious evolution of supernova neutrino flavor
- Time-dependent and quasi-steady features of fast neutrino-flavor conversion
- Neutrino Flavor Pendulum Reloaded: The Case of Fast Pairwise Conversion
- Simple method for determining asymptotic states of fast neutrino-flavor conversion
- Evolution of collisional neutrino flavor instabilities in spherically symmetric supernova models
- Collective Neutrino Flavor Instability Requires a Crossing
- Simulations of Fast Neutrino Flavor Conversions with Interactions in Inhomogeneous Media
- Code Comparison for Fast Flavor Instability Simulation
- Fast neutrino flavor conversions in one-dimensional core-collapse supernova models with and without muon creation
- Neutrino Fast Flavor Pendulum. Part 2: Collisional Damping
- Collisional instabilities of neutrinos and their interplay with fast flavor conversion in compact objects
- Prospects of fast flavor neutrino conversion in rotating core-collapse supernovae
- Entanglement and Many-Body effects in Collective Neutrino Oscillations
- Construction and analysis of a simplified many-body neutrino model
- Collision-induced flavor instability in dense neutrino gases with energy-dependent scattering
- Slow and fast collective neutrino oscillations: Invariants and reciprocity
- Spectral splits and entanglement entropy in collective neutrino oscillations
- Dynamics of fast neutrino flavor conversions with scattering effects: a detailed analysis
- Normal and anomalous solitons in the theory of dynamical Cooper pairing
- Enhancement or damping of fast neutrino flavor conversions due to collisions
- Dynamical Phase Transitions in models of Collective Neutrino Oscillations
- Entanglement and correlations in fast collective neutrino flavor oscillations
- Role of non-gaussian quantum fluctuations in neutrino entanglement
- Classical and Quantum Evolution in a Simple Coherent Neutrino Problem
- Effects of energy-dependent scatterings on fast neutrino flavor conversions
- Many-body effects of collective neutrino oscillations
- Entanglement in three-flavor collective neutrino oscillations
- Supernova fast flavor conversions in 1+1D : Influence of mu-tau neutrinos
- Flavor isospin waves in one-dimensional axisymmetric neutrino gases
- Many-body collective neutrino oscillations: recent developments
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- Collisional and Fast Neutrino Flavor Instabilities in Two-dimensional Core-collapse Supernova Simulation with Boltzmann Neutrino Transport
- 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
- Fast flavor conversions at the edge of instability in a two-beam model
- Asymptotic-state prediction for fast flavor transformation in neutron star mergers
- Qutrit and Qubit Circuits for Three-Flavor Collective Neutrino Oscillations
- Theory of neutrino slow flavor evolution. Part I. Homogeneous medium
- Collective flavor conversions are interactions of neutrinos with quantized flavor waves
- Fast Flavor Pendulum: Instability Condition
- Thermodynamics of oscillating neutrinos
- Muon-induced collisional flavor instability in core-collapse supernova
- Supernova Neutrinos: flavour conversion mechanisms and new physics scenarios
- Neutrino quantum kinetics in two spatial dimensions
- Diagnosing electron-neutrino lepton number crossings in core-collapse supernovae: A comparison of methods
- Steady state of fast-oscillating neutrinos in an inhomogeneous medium
- Electron-neutrino lepton number crossings: Variations with the supernova core physics
- Sufficient and Necessary Conditions for Collective Neutrino Instability: Fast, Slow, and Mixed
- Single-wave solutions of the neutrino fast flavor system. Part I. Mechanical properties
- Single-wave solutions of the neutrino fast flavor system. Part II. Weak instabilities and their resonant behavior