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D. G. Michael

Researcher at California Institute of Technology

Publications -  99
Citations -  6962

D. G. Michael is an academic researcher from California Institute of Technology. The author has contributed to research in topics: Neutrino & MINOS. The author has an hindex of 40, co-authored 98 publications receiving 6664 citations.

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Journal ArticleDOI

Improved search for muon-neutrino to electron-neutrino oscillations in MINOS

P. Adamson, +117 more
TL;DR: The results of a search for ν(e) appearance in a ν (μ) beam in the MINOS long-baseline neutrino experiment find that 2 sin(2) (θ(23))sin(2)(2θ (13))<0.12 at 90% confidence level for δ = 0 and the normal (inverted) neutrinos mass hierarchy.
Journal ArticleDOI

Observation of muon neutrino disappearance with the MINOS detectors in the NuMI neutrino beam

D. G. Michael, +302 more
TL;DR: In this article, the MINOS experiment reported results from its initial exposure to neutrinos from the Fermilab NuMI beam, and the rate and energy spectra of charged current muon neutrino interactions are compared in two detectors located along the beam axis at distances of 1 km and 735 km.
Journal ArticleDOI

Measurement of neutrino oscillations with the MINOS detectors in the NuMI beam.

P. Adamson, +177 more
TL;DR: The data disfavor two alternative explanations for the disappearance of neutrinos in flight: namely, neutrino decays into lighter particles and quantum decoherence of neutRinos, at the 3.7 and 5.7 standard-deviation levels, respectively.
Journal ArticleDOI

Measurement of Neutrino and Antineutrino Oscillations Using Beam and Atmospheric Data in MINOS

P. Adamson, +111 more
TL;DR: Measurements of oscillation parameters from ν (μ) and ν(μ) disappearance using beam and atmospheric data from MINOS are reported, with minimal change to the neutrino parameters.
Journal ArticleDOI

The magnetized steel and scintillator calorimeters of the MINOS experiment

D. G. Michael, +297 more
TL;DR: The main injector neutrino oscillation search (MINOS) experiment as mentioned in this paper uses an accelerator-produced Neutrino beam to perform precision measurements of the neutrinos oscillation parameters.