Impact of sterile neutrinos on the early time flux from a galactic supernova
arXiv:1402.1453 · doi:10.1103/PhysRevD.90.033013
Abstract
We study the impact of the existence of an eV-mass scale sterile neutrino---with parameters in the ballpark of what is required to fit the laboratory anomalies---on the early time profile of the electron neutrino and antineutrino fluxes associated to a core-collapse supernova (SN). In particular, we focus on the universal feature of neutronization burst expected in the first tens of ms of the signal: provided that a detector with sufficient sensitivity is available, it is well-known that in the 3 neutrino framework the detection of the neutronization burst in neutrino channel would signal inverted mass hierarchy. This conclusion is dramatically altered in the presence of a sterile neutrino: we study here both analytically and numerically the region in parameter space where this characteristic signal disappears, mimicking normal hierarchy expectations. Conversely, the detection of a peak consistent with expectations for inverted mass hierarchy would exclude the existence of a sterile state over a much wider parameter space than what required by laboratory anomalies fits, or even probed by detectors coming on-line in the near future. Additionally, we show the peculiar alteration in the energy-time double differential flux, with a delayed peak appearing for kinematical reasons, which might offer a remarkable signature in case of favorable parameters and for a high statistics detection of a Galactic SN. We also comment on additional potentially interesting effects in the electron antineutrino channel, if more than one angle in the active-sterile sector is non-vanishing. As an ancillary result that we derived in the technical resolution of the equations, in an appendix we report the Cayley-Hamilton formalism for the evolution of a four neutrino system in matter, generalizing existing results in the literature.
23 pages, 7 figures; v2: improved discussions, figures and references added, a typo in one of the equations and figures corrected, conclusions unchanged; matches the published version in PRD
References in corpus (19)
- The Reactor Antineutrino Anomaly
- Global status of neutrino oscillation parameters after Neutrino-2012
- Global fit to three neutrino mixing: critical look at present precision
- Light Sterile Neutrinos: A White Paper
- Statistical Significance of the Gallium Anomaly
- Role of dense matter in collective supernova neutrino transformations
- Limits on nu_e and anti-nu_e disappearance from Gallium and reactor experiments
- Improved analysis of SN1987A antineutrino events
- Large underground, liquid based detectors for astro-particle physics in Europe: scientific case and prospects
- Analysis of matter suppression in collective neutrino oscillations during the supernova accretion phase
- Neutrinos from Supernovae as a Trigger for Gravitational Wave Search
- Earth matter effects in supernova neutrinos: Optimal detector locations
- Reconstructing the supernova bounce time with neutrinos in IceCube
- Connection between supernova shocks, flavor transformation, and the neutrino signal
- KATRIN Sensitivity to Sterile Neutrino Mass in the Shadow of Lightest Neutrino Mass
- Turbulent Supernova Shock Waves and the Sterile Neutrino Signature in Megaton Water Detectors
- Probing neutrino oscillations from supernovae shock waves via the IceCube detector
- Flavour-dependent radiative correction to neutrino-neutrino refraction
- The likelihood for supernova neutrino analyses
Cited by in corpus (24)
- What can be learned from a future supernova neutrino detection?
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- Supernova Neutrino Burst Detection with the Deep Underground Neutrino Experiment
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- Neutrino Emission as Diagnostics of Core-Collapse Supernovae
- Supernova Constraints on Massive (Pseudo)Scalar Coupling to Neutrinos
- Supernova Signatures of Neutrino Mass Ordering
- Light Sterile Neutrinos: Status and Perspectives
- Heavy sterile neutrino emission in core-collapse supernovae: Constraints and signatures
- Sterile neutrino oscillations in core-collapse supernovae
- Probing secret interactions of eV-scale sterile neutrinos with the diffuse supernova neutrino background
- Nonstandard Neutrino Interactions in Supernovae
- Coupling Neutrino Oscillations and Simulations of Core-Collapse Supernovae
- Constraining sterile neutrinos by core-collapse supernovae with multiple detectors
- Improved Detection of Supernovae with the IceCube Observatory
- Neutrino flavor transformations in supernovae as a probe for nonstandard neutrino-scalar interactions
- Active-sterile neutrino oscillations at INO-ICAL over a wide mass-squared range
- Supernova neutrino fluxes in HALO-1kT, Super-Kamiokande, and JUNO
- GR Effects in Supernova Neutrino Flavor Transformation
- Prospects for detecting eV-scale sterile neutrinos from a galactic supernova
- Resonant Production of Light Sterile Neutrinos in Compact Binary Merger Remnants
- Neutrino interactions in liquid scintillators including active-sterile neutrino mixing
- Dark matter, supernova neutrinos and other backgrounds in direct dark matter searches. The ANDES laboratory prospects
- Oscillations Beyond Three-Neutrino Mixing