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This paper outlines a method for improving the precision of atmospheric neutrino oscillation measurements. One experimental signature for these oscillations is an observed deficit in the rate of $ u_{mu}$ charged-current interactions with an oscillatory dependence on $L_{ u}/E_{ u}$, where $L_{ u}$ is the neutrino propagation distance, and $E_{ u}$ is the neutrino energy. For contained-vertex atmospheric neutrino interactions, the $L_{ u}/E_{ u}$ resolution varies significantly from event to event. The precision of the oscillation measurement can be improved by incorporating information on $L_{ u}/E_{ u}$ resolution into the oscillation analysis. In the analysis presented here, a Bayesian technique is used to estimate the $L_{ u}/E_{ u}$ resolution of observed atmospheric neutrinos on an event-by-event basis. By separating the events into bins of $L_{ u}/E_{ u}$ resolution in the oscillation analysis, a significant improvement in oscillation sensitivity can be achieved.
It is said that the finding of the maximum oscillation in neutrino oscillation by Super-Kamiokande is one of the major achievements of the SK. In present paper, we examine the assumption made by Super-Kamiokande Collaboration that the direction of th
In the previous paper (Part~1), we have verified that the SK assumption on the direction does not hold in the analysis of neutrino events occurred inside the SK detector. We have made four possible L/E analyses, L_nu/E_nu, L_nu/E_mu, L_mu/E_nu and L_
This paper presents a novel technique for mitigating electrode backgrounds that limit the sensitivity of searches for low-mass dark matter (DM) using xenon time projection chambers. In the LUX detector, signatures of low-mass DM interactions would be
The data taken with the ANTARES neutrino telescope from 2007 to 2010, a total live time of 863 days, are used to measure the oscillation parameters of atmospheric neutrinos. Muon tracks are reconstructed with energies as low as 20 GeV. Neutrino oscil
Following the L_nu/E_nu analysis in the preceding paper of the Fully Contained Muon Events resulting from the quasi-elastic scattering obtained from our numerical computer experiment. In the present paper, we carry out the analyses of L_nu/E_mu, L_mu