New analysis of the SN 1987A neutrinos with a flexible spectral shape
arXiv:astro-ph/0508612 · doi:10.1103/PhysRevD.72.063001
Abstract
We analyze the neutrino events from the supernova (SN) 1987A detected by the Kamiokande II (KII) and Irvine-Michigan-Brookhaven (IMB) experiments. For the time-integrated flux we assume a quasi-thermal spectrum of the form where plays the role of a spectral index. This simple representation not only allows one to fit the total energy emitted in and the average energy , but also accommodates a wide range of shapes, notably anti-pinched spectra that are broader than a thermal distribution. We find that the pile-up of low-energy events near threshold in KII forces the best-fit value for to the lowest value of any assumed prior range. This applies to the KII events alone as well as to a common analysis of the two data sets. The preference of the data for an ``unphysical'' spectral shape implies that one can extract meaningful values for and only if one fixes a prior value for . The tension between the KII and IMB data sets and theoretical expectations for is not resolved by an anti-pinched spectrum.
to appear in PRD (6 pages, 6 eps figures)
References in corpus (6)
- Detection of Neutrinos from Supernovae in Nearby Galaxies
- Relic neutrino background from cosmological supernovae
- Neutrino signatures of supernova shock and reverse shock propagation
- Probing supernova shock waves and neutrino flavor transitions in next-generation water-Cherenkov detectors
- The Concordance Cosmic Star Formation Rate: Implications from and for the Supernova Neutrino and Gamma Ray Backgrounds
- New Test of Supernova Electron Neutrino Emission using Sudbury Neutrino Observatory Sensitivity to the Diffuse Supernova Neutrino Background
Cited by in corpus (27)
- Collective neutrino flavor transitions in supernovae and the role of trajectory averaging
- What can be learned from a future supernova neutrino detection?
- Improved analysis of SN1987A antineutrino events
- Damping of supernova neutrino transitions in stochastic shock-wave density profiles
- Core-Collapse Astrophysics with a Five-Megaton Neutrino Detector
- Supernova Neutrino Nucleosynthesis of Light Elements with Neutrino Oscillations
- Strong Supernova 1987A Constraints on Bosons Decaying to Neutrinos
- Supernova Simulations Confront SN 1987A Neutrinos
- Comparative analysis of SN1987A antineutrino fluence
- Turbulent Supernova Shock Waves and the Sterile Neutrino Signature in Megaton Water Detectors
- Neutrino Spectrum from SN 1987A and from Cosmic Supernovae
- (Down-to-)Earth matter effect in supernova neutrinos
- Direct Measurement of Supernova Neutrino Emission Parameters with a Gadolinium-Enhanced Super-Kamiokande Detector
- Effect of Collective Flavor Oscillations on the Diffuse Supernova Neutrino Background
- Robust measurement of supernova spectra with future neutrino detectors
- Parameter Degeneracy in Flavor-Dependent Reconstruction of Supernova Neutrino Fluxes
- Retrieval of energy spectra for all flavor of neutrinos from core-collapse supernova with multiple detectors
- New Test of Supernova Electron Neutrino Emission using Sudbury Neutrino Observatory Sensitivity to the Diffuse Supernova Neutrino Background
- Mini Z' Burst from Relic Supernova Neutrinos and Late Neutrino Masses
- SN1987A still shining: A Quest for Pseudo-Dirac Neutrinos
- Is there a problem with low energy SN1987A neutrinos?
- Probing Late Neutrino Mass Properties with Supernova Neutrinos
- Features of Kamiokande-II, IMB and Baksan observations and their interpretation in a two-component model for the signal
- The Diffuse Supernova Neutrino Background in the Standard and Double Collapse Models
- SN1987A constraints to BSM models with extra neutral bosons near the trapping regime: model as an illustrative example
- Understanding and visualizing the statistical analysis of SN1987A neutrino data
- Learning more about what can be concluded from the observation of neutrinos from a galactic supernova