The physics potential of a reactor neutrino experiment with Skipper CCDs: measuring the weak mixing angle

被引:0
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作者
Guillermo Fernandez-Moroni
Pedro A. N. Machado
Ivan Martinez-Soler
Yuber F. Perez-Gonzalez
Dario Rodrigues
Salvador Rosauro-Alcaraz
机构
[1] Fermi National Accelerator Laboratory,Departamento de Física Téorica and Instituto de Física Téorica, IFT
[2] Northwestern University,UAM/CSIC
[3] Department of Physics & Astronomy,undefined
[4] Colegio de Física Fundamental e Interdisciplinaria de las Américas (COFI),undefined
[5] Department of Physics,undefined
[6] FCEN,undefined
[7] University of Buenos Aires and IFIBA,undefined
[8] CONICET,undefined
[9] Universidad Autónoma de Madrid,undefined
关键词
Neutrino Physics; Precision QED;
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摘要
We analyze in detail the physics potential of an experiment like the one recently proposed by the vIOLETA collaboration: a kilogram-scale Skipper CCD detector deployed 12 meters away from a commercial nuclear reactor core. This experiment would be able to detect coherent elastic neutrino nucleus scattering from reactor neutrinos, capitalizing on the exceptionally low ionization energy threshold of Skipper CCDs. To estimate the physics reach, we elect the measurement of the weak mixing angle as a case study. We choose a realistic benchmark experimental setup and perform variations on this benchmark to understand the role of quenching factor and its systematic uncertainties, background rate and spectral shape, total exposure, and reactor antineutrino flux uncertainty. We take full advantage of the reactor flux measurement of the Daya Bay collaboration to perform a data driven analysis which is, up to a certain extent, independent of the theoretical un- certainties on the reactor antineutrino flux. We show that, under reasonable assumptions, this experimental setup may provide a competitive measurement of the weak mixing angle at few MeV scale with neutrino-nucleus scattering.
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