Javascript must be enabled to continue!
Investigating Sterile Neutrino Flux in the Solar Neutrino Data
View through CrossRef
There are compelling evidences for the existence of a fourth degree of freedom of neutrinos, i.e., sterile neutrino. In the recent studies the role of sterile component of neutrinos has been found to be crucial, not only in particle physics, but also in astrophysics and cosmology. This has been proposed to be one of the potential candidates of dark matter. In this work we investigate the updated solar neutrino data available from all the relevant experiments including Borexino and KamLAND solar phase in a model independent way and obtain bounds on the sterile neutrino component present in the solar neutrino flux. The mystery of the missing neutrinos is further deepening as subsequent experiments are coming up with their results. The energy spectrum of solar neutrinos, as predicted by Standard Solar Models (SSM), is seen by neutrino experiments at different parts as they are sensitive to various neutrino energy ranges. It is interesting to note that more than 98% of the calculated standard model solar neutrino flux lies below 1 MeV. Therefore, the study of low energy neutrinos can give us better understanding and the possibility of knowing about the presence of antineutrino and sterile neutrino components in solar neutrino flux. As such, this work becomes interesting as we include the data from medium energy (~1 MeV) experiments, i.e., Borexino and KamLAND solar phase. In our study we retrieve the bounds existing in literature and rather provide more stringent limits on sterile neutrino (νs) flux available in solar neutrino data.
Title: Investigating Sterile Neutrino Flux in the Solar Neutrino Data
Description:
There are compelling evidences for the existence of a fourth degree of freedom of neutrinos, i.
e.
, sterile neutrino.
In the recent studies the role of sterile component of neutrinos has been found to be crucial, not only in particle physics, but also in astrophysics and cosmology.
This has been proposed to be one of the potential candidates of dark matter.
In this work we investigate the updated solar neutrino data available from all the relevant experiments including Borexino and KamLAND solar phase in a model independent way and obtain bounds on the sterile neutrino component present in the solar neutrino flux.
The mystery of the missing neutrinos is further deepening as subsequent experiments are coming up with their results.
The energy spectrum of solar neutrinos, as predicted by Standard Solar Models (SSM), is seen by neutrino experiments at different parts as they are sensitive to various neutrino energy ranges.
It is interesting to note that more than 98% of the calculated standard model solar neutrino flux lies below 1 MeV.
Therefore, the study of low energy neutrinos can give us better understanding and the possibility of knowing about the presence of antineutrino and sterile neutrino components in solar neutrino flux.
As such, this work becomes interesting as we include the data from medium energy (~1 MeV) experiments, i.
e.
, Borexino and KamLAND solar phase.
In our study we retrieve the bounds existing in literature and rather provide more stringent limits on sterile neutrino (νs) flux available in solar neutrino data.
Related Results
History of solar neutrino observations
History of solar neutrino observations
Abstract
The first solar neutrino experiment, led by Raymond Davis Jr, showed a deficit of neutrinos relative to the solar model prediction, referred to as the “sola...
Solar Trackers Using Six-Bar Linkages
Solar Trackers Using Six-Bar Linkages
Abstract
A solar panel faces the sun or has the solar ray normal to its face to enhance power reaping. A fixed solar panel can only meet this condition at one moment...
Solar neutrino measurements using the full data period of Super-Kamiokande-IV
Solar neutrino measurements using the full data period of Super-Kamiokande-IV
An analysis of solar neutrino data from the fourth phase of Super-Kamiokande (SK-IV) from October 2008 to May 2018 is performed and the results are presented. The observation time ...
Solar wind interaction with comet 67P around perihelion
Solar wind interaction with comet 67P around perihelion
AbstractNear perihelion, when comet 67P was most active, the Rosetta spacecraft resided inside the comet induced magnetosphere. The solar wind magnetic field was still present, but...
Constraining the Prompt Atmospheric Neutrino Flux combining IceCube’s Cascade and Track samples
Constraining the Prompt Atmospheric Neutrino Flux combining IceCube’s Cascade and Track samples
Abstract
The IceCube Neutrino Observatory has observed a diffuse flux of high-energy astrophysical neutrinos for more than a decade. A releva...
Constraining super-light sterile neutrinos at Borexino and KamLAND
Constraining super-light sterile neutrinos at Borexino and KamLAND
Abstract
The presence of a super-light sterile neutrino can lead to a dip in the survival probability of solar neutrinos, and explain the suppression of the up...
Constraints on Populations of Neutrino Sources from Searches in the Directions of IceCube Neutrino Alerts
Constraints on Populations of Neutrino Sources from Searches in the Directions of IceCube Neutrino Alerts
Abstract
Beginning in 2016, the IceCube Neutrino Observatory has sent out alerts in real time containing the information of high-energy (E ≳ 100 TeV) neutrino candid...
Neutrino Oscillation Effects on the Luminosity of Neutrino-dominated Accretion Flows around Black Holes
Neutrino Oscillation Effects on the Luminosity of Neutrino-dominated Accretion Flows around Black Holes
Abstract
A stellar-mass black hole surrounded by the neutrino-dominated accretion flow (NDAF) has been proposed as the central engine of gamma-ray bursts. In this wo...

