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A. E. Kreymer

Researcher at Fermilab

Publications -  247
Citations -  12302

A. E. Kreymer is an academic researcher from Fermilab. The author has contributed to research in topics: MINOS & Neutrino. The author has an hindex of 58, co-authored 242 publications receiving 11587 citations.

Papers
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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.
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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.
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Observation of the narrow state X(3872) → J/ψπ+π- in p̄p collisions at √s = 1.96 TeV

D. Acosta, +639 more
TL;DR: In this paper, the authors reported the observation of a state consistent with X(3872) decaying into J/ψπ+π-decomposition, where the observed width was consistent with the detector resolution and the results were found to be converging well with the measurements by the Belle Collaboration using b± decays.
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Measurement of the J/ψ meson and b-hadron production cross sections in pp̄ collisions at √s = 1960 GeV

D. Acosta, +682 more
- 01 Jan 2005 - 
TL;DR: In this paper, the authors presented a new measurement of the inclusive and differential production cross sections of J/psi mesons and b-hadrons in proton-antiproton collisions at {radical}s = 1960 GeV The data correspond to an integrated luminosity of 397 pb{sup -1} collected by the CDF Run II detector.
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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.