Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Optically informed searches of high-energy neutrinos from interaction-powered supernovae

View through CrossRef
ABSTRACT The interaction between the ejecta of supernovae (SNe) of Type IIn and a dense circumstellar medium can efficiently generate thermal ultraviolet/optical radiation and lead to the emission of neutrinos in the 1–103 TeV range. We investigate the connection between the neutrino signal detectable at the IceCube Neutrino Observatory and the electromagnetic signal observable by optical wide-field, high-cadence surveys to outline the best strategy for upcoming follow-up searches. We outline a semi-analytical model that connects the optical light-curve properties to the SN parameters and find that a large peak luminosity (${L_{\rm {peak}}\gtrsim 10^{43}{-}10^{44}\, \mathrm{erg \, s^{-1}}}$) and an average rise time (trise ≳ 10−40 d) are necessary for copious neutrino emission. Nevertheless, the most promising Lpeak and trise can be obtained for SN configurations that are not optimal for neutrino emission. Such ambiguous correspondence between the optical light-curve properties and the number of IceCube neutrino events implies that relying on optical observations only, a range of expected neutrino events should be considered (e.g. the expected number of neutrino events can vary up to two orders of magnitude for some among the brightest SNe IIn observed by the Zwicky Transient Facility up to now, SN 2020usa and SN 2020in). In addition, the peak in the high-energy neutrino curve should be expected a few trise after the peak in the optical light curve. Our findings highlight that it is crucial to infer the SN properties from multiwavelength observations rather than focusing on the optical band only to enhance upcoming neutrino searches.
Title: Optically informed searches of high-energy neutrinos from interaction-powered supernovae
Description:
ABSTRACT The interaction between the ejecta of supernovae (SNe) of Type IIn and a dense circumstellar medium can efficiently generate thermal ultraviolet/optical radiation and lead to the emission of neutrinos in the 1–103 TeV range.
We investigate the connection between the neutrino signal detectable at the IceCube Neutrino Observatory and the electromagnetic signal observable by optical wide-field, high-cadence surveys to outline the best strategy for upcoming follow-up searches.
We outline a semi-analytical model that connects the optical light-curve properties to the SN parameters and find that a large peak luminosity (${L_{\rm {peak}}\gtrsim 10^{43}{-}10^{44}\, \mathrm{erg \, s^{-1}}}$) and an average rise time (trise ≳ 10−40 d) are necessary for copious neutrino emission.
Nevertheless, the most promising Lpeak and trise can be obtained for SN configurations that are not optimal for neutrino emission.
Such ambiguous correspondence between the optical light-curve properties and the number of IceCube neutrino events implies that relying on optical observations only, a range of expected neutrino events should be considered (e.
g.
the expected number of neutrino events can vary up to two orders of magnitude for some among the brightest SNe IIn observed by the Zwicky Transient Facility up to now, SN 2020usa and SN 2020in).
In addition, the peak in the high-energy neutrino curve should be expected a few trise after the peak in the optical light curve.
Our findings highlight that it is crucial to infer the SN properties from multiwavelength observations rather than focusing on the optical band only to enhance upcoming neutrino searches.

Related Results

Toward an inner connection of SNe Ic, SLSNe Ic, XRF connected SNe, SNe Ic-BL, and GRB connected SNe
Toward an inner connection of SNe Ic, SLSNe Ic, XRF connected SNe, SNe Ic-BL, and GRB connected SNe
AbstractType Ic supernovae can be classified as normal supernovae Ic, type Ic super-luminous supernovae, X-ray flash-connected supernovae, broad-line supernovae Ic, and gamma-ray b...
Constraining High-energy Neutrino Emission from Supernovae with IceCube
Constraining High-energy Neutrino Emission from Supernovae with IceCube
Abstract Core-collapse supernovae are a promising potential high-energy neutrino source class. We test for correlation between seven years of IceCube neutrino data a...
From T2K to Hyper-Kamiokande : neutrino oscillation analysis and preparation of the time synchronization system
From T2K to Hyper-Kamiokande : neutrino oscillation analysis and preparation of the time synchronization system
De T2K à Hyper-Kamiokande : analyse d’oscillation des neutrinos et préparation du système de synchronisation en temps Les neutrinos sont les particules du Modèle St...
Etude des oscillations de neutrinos atmosphériques avec le télescope à neutrinos ANTARES
Etude des oscillations de neutrinos atmosphériques avec le télescope à neutrinos ANTARES
Les neutrinos sont probablement les particules les plus particulières connues à ce jours. Dès la première hypothèse sur leur existence, en 1930, jusqu'à aujourd'hui, ils ont incité...
Euclid: Searching for pair-instability supernovae with the Deep Survey
Euclid: Searching for pair-instability supernovae with the Deep Survey
Pair-instability supernovae are theorized supernovae that have not yet been observationally confirmed. They are predicted to exist in low-metallicity environments. Because overall ...
Recherche de neutrinos lourds avec l'expérience T2K
Recherche de neutrinos lourds avec l'expérience T2K
La masse non-nulle des neutrinos rend nécessaire l'introduction de nouvelle physique pour expliquer celle-ci. Par exemple, l'ajout de neutrinos lourds avec une masse de l'ordre du ...
Interacciones de neutrinos: efectos colectivos y aplicaciones a medios astrofísicos
Interacciones de neutrinos: efectos colectivos y aplicaciones a medios astrofísicos
La astrofísica teórica en la actualidad se basa en la conjunción de modelos electrodébiles, la física de hadrones y bariones, y modelos de estructuras extendidas de la materia. Un ...
Observational Data on Novae and Supernovae
Observational Data on Novae and Supernovae
The first half of the paper contains a discussion of the chemical composition of the envelopes of supernovae for the period close to light maximum. The principal conclusions are: T...

Back to Top