Exploring entanglement and spectral split correlations in three-flavor collective neutrino oscillations
arXiv:2411.05169 · doi:10.1103/PhysRevD.111.063038
Abstract
In environments with prodigious numbers of neutrinos, such as core-collapse supernovae, neutron star mergers, or the early universe, neutrino-neutrino interactions are dynamically significant. They can dominate neutrino flavor evolution and force it to be nonlinear, causing collective neutrino oscillations. Such collective oscillations have been studied numerically, for systems with up to millions of neutrinos, using mean-field or one-particle effective approximations. However, such a system of interacting neutrinos is a quantum many-body system, wherein quantum correlations could play a significant in the flavor evolution-thereby motivating the exploration of many-body treatments which follow the time evolution of these correlations. In many-body flavor evolution calculations with two neutrino flavors, the emergence of spectral splits in the neutrino energy distributions has been found to be correlated with the degree of quantum entanglement across the spectrum. In this work, for the first time, we investigate the emergence of spectral-splits in the three-flavor many-body collective neutrino oscillations. We find that the emergence of spectral splits resembles the number and location found in the mean-field approximation but not in the width. Moreover, unlike in the two-flavor many-body calculations, we find that additional degrees of freedom make it more difficult to establish a correlation between the location of the spectral splits and the degree of quantum entanglement across the neutrino energy spectrum.
10 pages, 6 figures
References in corpus (67)
- Theory of Core-Collapse Supernovae
- Collective Neutrino Oscillations
- Simulation of Coherent Non-Linear Neutrino Flavor Transformation in the Supernova Environment I: Correlated Neutrino Trajectories
- Multiple Spectral Splits of Supernova Neutrinos
- Self-induced spectral splits in supernova neutrino fluxes
- Collective neutrino flavor conversion: Recent developments
- New Developments in Flavor Evolution of a Dense Neutrino Gas
- Coherent Development of Neutrino Flavor in the Supernova Environment
- Analysis of Collective Neutrino Flavor Transformation in Supernovae
- Extended evolution equations for neutrino propagation in astrophysical and cosmological environments
- Adiabaticity and spectral splits in collective neutrino transformations
- Neutrinos And Big Bang Nucleosynthesis
- Invariants of Collective Neutrino Oscillations
- Neutrino-Neutrino Interactions and Flavor Mixing in Dense Matter
- Neutrino energy transport in weak decoupling and big bang nucleosynthesis
- Neutrino flavour transformation in supernovae
- Mu- and Tau-Neutrino Spectra Formation in Supernovae
- The influence of collective neutrino oscillations on a supernova r-process
- Neutrino spectra evolution during proto-neutron star deleptonization
- Fast neutrino flavor conversion, ejecta properties, and nucleosynthesis in newly-formed hypermassive remnants of neutron-star mergers
- Effects of neutrino oscillations on nucleosynthesis and neutrino signals for an 18 M supernova model
- Simple Picture for Neutrino Flavor Transformation in Supernovae
- Neutrino flavor conversion in a neutrino background: single- versus multi-particle description
- Spectral split in prompt supernova neutrino burst: Analytic three-flavor treatment
- Do many-particle neutrino interactions cause a novel coherent effect?
- The Influence of Neutrinos on r-Process Nucleosynthesis in the Ejecta of Black Hole-Neutron Star Mergers
- Neutrinos and Nucleosynthesis in Gamma-Ray Burst Accretion Disks
- Neutrino transport in black hole-neutron star binaries: neutrino emission and dynamical mass ejection
- Neutrino mass hierarchy and three-flavor spectral splits of supernova neutrinos
- Neutrino transport in general relativistic neutron star merger simulations
- Supernova Neutrino Nucleosynthesis of Light Elements with Neutrino Oscillations
- Simulation of Collective Neutrino Oscillations on a Quantum Computer
- Potential Impact of Fast Flavor Oscillations on Neutrino-driven Winds and Their Nucleosynthesis
- Entanglement and collective flavor oscillations in a dense neutrino gas
- Speed-up through entanglement -- many-body effects in neutrino processes
- Basic Elements for Simulations of Standard Model Physics with Quantum Annealers: Multigrid and Clock States
- Entanglement and Many-Body effects in Collective Neutrino Oscillations
- Low-energy spectral features of supernova (anti)neutrinos in inverted hierarchy
- Exact solution of multi-angle quantum many-body collective neutrino flavor oscillations
- Construction and analysis of a simplified many-body neutrino model
- Spectral splits and entanglement entropy in collective neutrino oscillations
- Possible effects of collective neutrino oscillations in the three flavor multi-angle simulations on supernova process
- Neutrino Flavor Conversion, Advection, and Collisions: Towards the Full Solution
- Neutrino Spectral Split in the Exact Many Body Formalism
- Multi-Neutrino Entanglement and Correlations in Dense Neutrino Systems
- Dynamical Phase Transitions in models of Collective Neutrino Oscillations
- Eigenvalues and eigenstates of the many-body collective neutrino oscillation problem
- Entanglement and correlations in fast collective neutrino flavor oscillations
- Supernova neutrinos and antineutrinos: ternary luminosity diagram and spectral split patterns
- Role of non-gaussian quantum fluctuations in neutrino entanglement
- Supernova neutrino three-flavor evolution with dominant collective effects
- Classical and Quantum Evolution in a Simple Coherent Neutrino Problem
- Neutrino Decoupling Is Altered by Flavor Conversion
- Many-body effects of collective neutrino oscillations
- Entanglement in three-flavor collective neutrino oscillations
- Neutrino Magnetic Moment, CP Violation and Flavor Oscillations in Matter
- Quantum information and quantum simulation of neutrino physics
- Active-sterile Neutrino Oscillations in Neutrino-driven Winds: Implications for Nucleosynthesis
- Do we have enough evidence to invalidate the mean-field approximation adopted to model collective neutrino oscillations?
- Once-in-a-lifetime encounter models for neutrino media: From coherent oscillations to flavor equilibration
- Collective neutrino oscillations and heavy-element nucleosynthesis in supernovae: exploring potential effects of many-body neutrino correlations
- Qutrit and Qubit Circuits for Three-Flavor Collective Neutrino Oscillations
- Neutrino many-body correlations
- Collective Neutrino Oscillations and Nucleosynthesis
- Non-Boltzmann behaviour in models of interacting neutrinos
- On symmetries of Hamiltonians describing systems with arbitrary spins
- On the properties of qudits