Diffuse supernova neutrino background with up-to-date star formation rate measurements and long-term multidimensional supernova simulations
arXiv:2310.15254 · doi:10.1103/PhysRevD.109.023024
Abstract
The sensitivity of current and future neutrino detectors like Super-Kamiokande (SK), JUNO, Hyper-Kamiokande (HK), and DUNE is expected to allow for the detection of the diffuse supernova neutrino background (DSNB). However, the DSNB model ingredients like the core-collapse supernova (CCSN) rate, neutrino emission spectra, and the fraction of failed supernovae are not precisely known. We quantify the uncertainty on each of these ingredients by (i) compiling a large database of recent star formation rate density measurements, (ii) combining neutrino emission from long-term axisymmetric CCSNe simulations and strategies for estimating the emission from the protoneutron star cooling phase, and (iii) assuming different models of failed supernovae. Finally, we calculate the fluxes and event rates at multiple experiments and perform a simplified statistical estimate of the time required to significantly detect the DSNB at SK with the gadolinium upgrade and JUNO. Our fiducial model predicts a flux of at SK employing Gd-tagging, or events per year, where the errors represent our uncertainty from star formation rate density measurements, uncertainty in neutrino emission, and uncertainty in the failed-supernova scenario. In this fiducial calculation, we could see a detection by with SK-Gd and a detection by with a joint SK-Gd/JUNO analysis, but background reduction remains crucial.
19 pages, 9 figures, 3+2 tables. Table III fluxes have been corrected and match the version published in PRD
References in corpus (139)
- Galactic Stellar and Substellar Initial Mass Function
- Cosmic Star Formation History
- LSST: from Science Drivers to Reference Design and Anticipated Data Products
- A Comprehensive Measurement of the Local Value of the Hubble Constant with 1 km/s/Mpc Uncertainty from the Hubble Space Telescope and the SH0ES Team
- On the normalisation of the cosmic star formation history
- Neutrino Physics with JUNO
- Relativistic Equation of State of Nuclear Matter for Supernova and Neutron Star
- Nearby Supernova Rates from the Lick Observatory Supernova Search. II. The Observed Luminosity Functions and Fractions of Supernovae in a Complete Sample
- Black Hole Formation in Failing Core-Collapse Supernovae
- Core-collapse supernova equations of state based on neutron star observations
- The star formation history of mass-selected galaxies in the COSMOS field
- Monte Carlo Study of Supernova Neutrino Spectra Formation
- The angular distribution of the reaction
- The Herschel PEP/HerMES Luminosity Function. I: Probing the Evolution of PACS selected Galaxies to z~4
- GADZOOKS! Antineutrino Spectroscopy with Large Water Cerenkov Detectors
- Precise quasielastic neutrino/nucleon cross section
- The deepest Herschel-PACS far-infrared survey: number counts and infrared luminosity functions from combined PEP/GOODS-H observations
- Neutrino Signal of Electron-Capture Supernovae from Core Collapse to Cooling
- A two-parameter criterion for classifying the explodability of massive stars by the neutrino-driven mechanism
- AION: An Atom Interferometer Observatory and Network
- Global constraints on absolute neutrino masses and their ordering
- Explosion Mechanism, Neutrino Burst, and Gravitational Wave in Core-Collapse Supernovae
- The search for failed supernovae with the Large Binocular Telescope: confirmation of a disappearing star
- The Star Formation Rate Density and Dust Attenuation Evolution over 12 Gyr with the VVDS Surveys
- Constraints on a Universal IMF from UV to Near-IR Galaxy Luminosity Densities
- A Survey About Nothing: Monitoring a Million Supergiants for Failed Supernovae
- The Diffuse Supernova Neutrino Background
- High Redshift Supernova Rates
- The Diffuse Supernova Neutrino Background is detectable in Super-Kamiokande
- Star formation at z=1.47 from HiZELS: An Hα+[OII] double-blind study
- GAMA/G10-COSMOS/3D-HST: The 0<z<5 cosmic star-formation history, stellar- and dust-mass densities
- The Cosmic Core-collapse Supernova Rate does not match the Massive-Star Formation Rate
- The ALPINE-ALMA [CII] Survey: The nature, luminosity function and star formation history of dusty galaxies up to z~6
- On the redshift evolution (0 < z < 4) of dust attenuation and of the total (UV+IR) star formation rate density
- Star formation along the Hubble sequence: Radial structure of the star formation of CALIFA galaxies
- Self-consistent 3D Supernova Models From -7 Minutes to +7 Seconds: a 1-bethe Explosion of a ~19 Solar-mass Progenitor
- The Search for Failed Supernovae with The Large Binocular Telescope: First Candidates
- A -ray determination of the Universe's star-formation history
- Mid- and Far-infrared Luminosity Functions and Galaxy Evolution from Multiwavelength Spitzer Observations up to z~2.5
- The stellar mass function of star-forming galaxies and the mass-dependent SFR function since z=2.23 from HiZELS
- The VLA-COSMOS 3 GHz Large Project: The cosmic star formation history since z~5
- Planck 2013 results. XVIII. Gravitational lensing-infrared background correlation
- Grand Unified Neutrino Spectrum at Earth: Sources and Spectral Components
- The star-formation history of K-selected galaxies
- Supernova Neutrino Light Curves and Spectra for Various Progenitor Stars: From Core Collapse to Proto-neutron Star Cooling
- HiZELS: a high redshift survey of H-alpha emitters. II: the nature of star-forming galaxies at z=0.84
- GAMA/H-ATLAS: A meta-analysis of SFR indicators - comprehensive measures of the SFR-M* relation and Cosmic Star Formation History at z < 0.4
- What can be learned from a future supernova neutrino detection?
- Supernova rates from the Southern inTermediate Redshift ESO Supernova Search (STRESS)
- The Progenitor Dependence of Three-Dimensional Core-Collapse Supernovae
- The Core-collapse rate from the Supernova Legacy Survey
- The Rate of Core Collapse Supernovae to Redshift 2.5 From The CANDELS and CLASH Supernova Surveys
- The star-formation rate density from z = 0-6
- Core-collapse supernovae missed by optical surveys
- Supernovae in the Subaru Deep Field: the rate and delay-time distribution of type Ia supernovae out to redshift 2
- Galaxy And Mass Assembly: Evolution of the Halpha luminosity function and star formation rate density up to z<0.35
- The Search for Failed Supernovae with the Large Binocular Telescope: Constraints from 7 Years of Data
- Black hole formation and fallback during the supernova explosion of a star
- The H-alpha Luminosity Function and Star Formation Rate Volume Density at z=0.8 from the NEWFIRM H-alpha Survey
- Evolution of the H+[OIII] and [OII] luminosity functions and the [OII] star-formation history of the Universe up to ~ 5 from HiZELS
- Supernova rates from the SUDARE VST-Omegacam search. I
- The Extended Hubble Space Telescope Supernova Survey: The Rate of Core Collapse Supernovae to z~1
- Diffuse Supernova Neutrino Background Search at Super-Kamiokande
- Galaxy And Mass Assembly (GAMA): A forensic SED reconstruction of the cosmic star formation history and metallicity evolution by galaxy type
- Addendum to: Global constraints on absolute neutrino masses and their ordering
- A full general relativistic neutrino radiation-hydrodynamics simulation of a collapsing very massive star and the formation of a black hole
- The Halpha-based Star Formation Rate Density of the Universe at z=0.84
- Detectability of the Supernova Relic Neutrinos and Neutrino Oscillation
- Diffuse neutrino flux from failed supernovae
- SDSS IV MaNGA - An archaeological view of the Cosmic Star Formation History
- The Core Collapse Supernova Rate from the SDSS-II Supernova Survey
- Diffuse supernova neutrinos at underground laboratories
- Measuring the supernova unknowns at the next-generation neutrino telescopes through the diffuse neutrino background
- The dust un-biased cosmic star formation history from the 20 cm VLA-COSMOS survey
- The Concordance Cosmic Star Formation Rate: Implications from and for the Supernova Neutrino and Gamma Ray Backgrounds
- Death rate of massive stars at redshift ~0.3
- The Supernova Relic Neutrino Background
- Core-collapse supernova neutrino emission and detection informed by state-of-the-art three-dimensional numerical models
- The H Luminosity Function and Star Formation Rate at in the Cosmos 2 Square-Degree Field
- The cosmic evolution of the spatially-resolved star formation rate and stellar mass of the CALIFA survey
- Stellar Collapse Diversity and the Diffuse Supernova Neutrino Background
- A unified explanation for the supernova rate-galaxy mass dependency based on supernovae discovered in Sloan galaxy spectra
- Neutrino emission characteristics of black hole formation in three-dimensional simulations of stellar collapse
- The Star Formation Rate Distribution Function of the Local Universe
- The Rate of Supernovae at Redshift 0.1-1.0 - the Stockholm VIMOS Supernova Survey IV
- The GALEX-SDSS NUV & FUV Flux Density and Local Star-Formation Rate
- The search for failed supernovae with the Large Binocular Telescope: a new candidate and the failed SN fraction with 11 yr of data
- Constraints on the Star Formation Rate from Supernova Relic Neutrino Observations
- The HerMES SPIRE submillimeter local luminosity function
- Diffuse Supernova Neutrino Background from extensive core-collapse simulations of - progenitors
- Diffuse supernova neutrinos: oscillation effects, stellar cooling and progenitor mass dependence
- Supernova Relic Neutrinos in Liquid Argon detectors
- The Essential Character of the Neutrino Mechanism of Core-Collapse Supernova Explosions
- The HETDEX Pilot Survey. IV. The Evolution of [O II] Emitting Galaxies from z ~ 0.5 to z ~ 0
- The diffuse supernova neutrino flux, supernova rate and SN1987A
- The [OII]3727 Luminosity function and Star Formation Rate at z~1.2 in the COSMOS 2 Square-degree Field and the Subaru Deep Field
- Supernova Relic Neutrinos and the Supernova Rate Problem: Analysis of Uncertainties and Detectability of ONeMg and Failed Supernovae
- Spectrum of the Supernova Relic Neutrino Background and Metallicity Evolution of Galaxies
- The [O II] lambda 3727 Luminosity Function at z ~ 1
- Explosion mechanism of core-collapse supernovae: role of the Si/O interface
- Search for astrophysical electron antineutrinos in Super-Kamiokande with 0.01wt% gadolinium-loaded water
- Global Star Formation Rate Density over 0.7<z<1.9
- Synoptic Sky Surveys and the Diffuse Supernova Neutrino Background: Removing Astrophysical Uncertainties and Revealing Invisible Supernovae
- Supernova neutrino signals based on long-term axisymmetric simulations
- Diffuse neutrinos from luminous and dark supernovae: prospects for upcoming detectors at the O(10) kt scale
- The HerMES sub-millimetre local and low-redshift luminosity functions
- Impact of binary interactions on the diffuse supernova neutrino background
- Shockwaves in Supernovae: New Implications on the Diffuse Supernova Neutrino Background
- Direct Measurement of Supernova Neutrino Emission Parameters with a Gadolinium-Enhanced Super-Kamiokande Detector
- The LOFAR Two-metre Sky Survey: the radio view of the cosmic star formation history
- Imprint of Explosion Mechanism on Supernova Relic Neutrinos
- Cosmic Core-Collapse Supernovae from Upcoming Sky Surveys
- Evolution of the Halpha luminosity function
- Diffuse Cosmic Neutrino Background from Population III Stars
- Feeble neutrino portal dark matter at neutrino detectors
- Neutrinos from failed supernovae at future water and liquid argon detectors
- The Wyoming Survey for H-alpha. III. H-alpha Luminosity Functions at z ~ 0.16, 0.24, 0.32, and 0.40
- Fallback accretion powered supernova light curves based on a neutrino-driven explosion simulation of a 40 Msun star
- A large, deep 3 deg survey of H, [OIII], and [OII] emitters from LAGER: constraining luminosity functions
- Retrieval of energy spectra for all flavor of neutrinos from core-collapse supernova with multiple detectors
- Detecting the Diffuse Supernova Neutrino Background in the future Water-based Liquid Scintillator Detector Theia
- Neutrino Signatures from the First Stars
- The diffuse supernova neutrino background: Expectations and uncertainties derived from SN1987A
- [OII] emitters in the GOODS field at z~1.85: a homogeneous measure of evolving star formation
- The Cosmic MeV Neutrino Background as a Laboratory for Black Hole Formation
- Numerical Study of Stellar Core Collapse and Neutrino Emission Using the Nuclear Equation of State Obtained by the Variational Method
- Star-Forming Galaxies at z=0.24 in the Subaru Deep Field and the Sloan Digital Sky Survey
- Prospects for the detection of the Diffuse Supernova Neutrino Background with the experiments SK-Gd and JUNO
- J-PLUS: The star formation main sequence and rate density at d < 75 Mpc
- Analytic solutions for neutrino-light curves of core-collapse supernovae
- Impact of late-time neutrino emission on the diffuse supernova neutrino background
- A Force Explosion Condition for Spherically Symmetric Core-collapse Supernovae
- Diffuse Neutrino Flux Based on the Rates of Core-collapse Supernovae and Black Hole Formation Deduced from a Novel Galactic Chemical Evolution Model
- Exploring the Fate of Stellar Core Collapse with Supernova Relic Neutrinos
- Near-identical star formation rate densities from H and FUV at redshift zero
- The 1.4 GHz Cosmic Star Formation History at z < 1.3
- Cosmic star formation history with tomographic cosmic infrared background-galaxy cross-correlation
- Properties of galaxies at the faint end of the H luminosity function at
- Timing coincidence search for supernova neutrinos with optical transient surveys
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- Neutrinos from explosive transients at the dawn of multi-messenger astronomy
- Energy-dependent Boosted Dark Matter from Diffuse Supernova Neutrino Background
- Constraining neutrino-DM interactions with Milky Way dwarf spheroidals and supernova neutrinos
- Diffuse Neutrino Background from Magnetorotational Stellar Core Collapses
- Impacts of Black-Hole-Forming Supernova Explosions on the Diffuse Neutrino Background