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Measurement of Neutral-Current π0π0 Cross Section in MicroBooNE using Wire-Cell Reconstruction

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Measurement of Neutral-Current π0π0 Cross Section in MicroBooNE using Wire-Cell Reconstruction. / MicroBooNE Collaboration.
2022.

Research output: Working paperPreprint

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@techreport{06844b0fcadc4ea393dc8c37c4540569,
title = "Measurement of Neutral-Current π0π0 Cross Section in MicroBooNE using Wire-Cell Reconstruction",
abstract = "This note presents the extraction of flux-averaged total and differential neutral-current π0 cross section measurements, based on the Wiener-SVD unfolding method, using the MicroBooNE Liquid Argon Time Projection Chamber (LArTPC) and the Wire-Cell reconstruction paradigm. This measurement is critical for single-photon searches as neutral-current pion production represents one of the largest sources of background. We report the results for an exposure corresponding to 5.327 × 1019 protons-on-target (POT).",
author = "{MicroBooNE Collaboration} and Jaroslaw Nowak",
year = "2022",
month = may,
day = "31",
doi = "10.2172/2397225",
language = "English",
type = "WorkingPaper",

}

RIS

TY - UNPB

T1 - Measurement of Neutral-Current π0π0 Cross Section in MicroBooNE using Wire-Cell Reconstruction

AU - MicroBooNE Collaboration

AU - Nowak, Jaroslaw

PY - 2022/5/31

Y1 - 2022/5/31

N2 - This note presents the extraction of flux-averaged total and differential neutral-current π0 cross section measurements, based on the Wiener-SVD unfolding method, using the MicroBooNE Liquid Argon Time Projection Chamber (LArTPC) and the Wire-Cell reconstruction paradigm. This measurement is critical for single-photon searches as neutral-current pion production represents one of the largest sources of background. We report the results for an exposure corresponding to 5.327 × 1019 protons-on-target (POT).

AB - This note presents the extraction of flux-averaged total and differential neutral-current π0 cross section measurements, based on the Wiener-SVD unfolding method, using the MicroBooNE Liquid Argon Time Projection Chamber (LArTPC) and the Wire-Cell reconstruction paradigm. This measurement is critical for single-photon searches as neutral-current pion production represents one of the largest sources of background. We report the results for an exposure corresponding to 5.327 × 1019 protons-on-target (POT).

U2 - 10.2172/2397225

DO - 10.2172/2397225

M3 - Preprint

BT - Measurement of Neutral-Current π0π0 Cross Section in MicroBooNE using Wire-Cell Reconstruction

ER -