Measurement Of The Charged Current To Quasi Elastic Cross Section Ratio On Mineral Oil In A 08 Gev Neutrino Beam PDF Download

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Measurement of Electron Neutrino Quasielastic and Quasielasticlike Scattering on Hydrocarbon at $\langle E_{\nu} \rangle $

Measurement of Electron Neutrino Quasielastic and Quasielasticlike Scattering on Hydrocarbon at $\langle E_{\nu} \rangle $
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Release: 2016
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The first direct measurement of electron neutrino quasielastic and quasielasticlike scattering on hydrocarbon in the few-GeV region of incident neutrino energy has been carried out using the MINERvA detector in the NuMI beam at Fermilab. The flux-integrated differential cross sections in the electron production angle, electron energy, and Q2 are presented. The ratio of the quasielastic, flux-integrated differential cross section in Q2 for [nu]e with that of similarly selected [nu][mu]-induced events from the same exposure is used to probe assumptions that underpin conventional treatments of charged-current [nu]e interactions used by long-baseline neutrino oscillation experiments. Furthermore, the data are found to be consistent with lepton universality and are well described by the predictions of the neutrino event generator GENIE.


NuInt04

NuInt04
Author: Flavio Cavanna
Publisher:
Total Pages: 350
Release: 2005
Genre: Neutrino interactions
ISBN:

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Measurement of K+ Production Cross Section by 8 GeV Protons Using High Energy Neutrino Interactions in the SciBooNE Detector

Measurement of K+ Production Cross Section by 8 GeV Protons Using High Energy Neutrino Interactions in the SciBooNE Detector
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Release: 2011
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The SciBooNE Collaboration reports K+ production cross section and rate measurements using high energy daughter muon neutrino scattering data off the SciBar polystyrene (C8H8) target in the SciBooNE detector. The K+ mesons are produced by 8 GeV protons striking a beryllium target in Fermilab Booster Neutrino Beam line (BNB). Using observed neutrino and antineutrino events in SciBooNE, we measure d2[sigma]/dpd[Omega] = (5.34 "0.76) mb/(GeV/c x sr) for p + Be =K+ + X at mean K+ energy of 3.9 GeV and angle (with respect to the proton beam direction) of 3.7 degrees, corresponding to the selected K+ sample. Compared to Monte Carlo predictions using previous higher energy K+ production measurements, this measurement, which uses the NUANCE neutrino interaction generator, is consistent with a normalization factor of 0.85 " 0.12. This agreement is evidence that the extrapolation of the higher energy K+ measurements to an 8 GeV beam energy using Feynman scaling is valid. This measurement reduces the error on the K+ production cross section from 40% to 14%.


Nuclear Science Abstracts

Nuclear Science Abstracts
Author:
Publisher:
Total Pages: 516
Release: 1973
Genre: Nuclear energy
ISBN:

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Measurement of $\nu_{\mu}$ and $\bar{\nu}_{\mu}$ Neutral Current $\pi^{0} \rightarrow \gamma\gamma$ Production in the ArgoNeuT Detector

Measurement of $\nu_{\mu}$ and $\bar{\nu}_{\mu}$ Neutral Current $\pi^{0} \rightarrow \gamma\gamma$ Production in the ArgoNeuT Detector
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Release: 2015
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The ArgoNeuT collaboration reports the first measurement of neutral current $\pi^{0}$ production in $\nu_{\mu}$-argon and $\bar{\nu}_{\mu}$-argon scattering. This measurement was performed using the ArgoNeuT liquid argon time projection chamber deployed at Fermilab's NuMI neutrino beam with an exposure corresponding to 1.2$\times 10^{20}$ protons-on-target from the Fermilab Main Injector and a mean energy for $\nu_{\mu}$ of 9.6~GeV and for $\bar{\nu}_{\mu}$ of 3.6~GeV. We compare the measured cross section and kinematic distributions to predictions from the GENIE and NuWro neutrino interaction event generators.