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First Measurement of the Muon Neutrino Interaction Cross Section and Flux as a Function of Energy at the LHC with FASER
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This Letter presents the measurement of the energy-dependent neutrino-nucleon cross section in tungsten and the differential flux of muon neutrinos and antineutrinos. The analysis is performed using proton-proton collision data at a center-of-mass energy of 13.6 TeV and corresponding to an integrated luminosity of
(
65.6
±
1.4
)
fb
−
1
. Using the active electronic components of the FASER detector,
338.1
±
21.0
charged current muon neutrino interaction events are identified, with backgrounds from other processes subtracted. We unfold the neutrino events into a fiducial volume corresponding to the sensitive regions of the FASER detector and interpret the results in two ways: (i) we use the expected neutrino flux to measure the cross section, and (ii) we use the predicted cross section to measure the neutrino flux. Both results are presented in six bins of neutrino energy, achieving the first differential measurement in the TeV range. The observed distributions align with standard model predictions. Using this differential data, we extract the contributions of neutrinos from pion and kaon decays.
American Physical Society (APS)
Roshan Mammen Abraham
Xiaocong Ai
John Anders
Claire Antel
Akitaka Ariga
Tomoko Ariga
Jeremy Atkinson
Florian U. Bernlochner
Tobias Boeckh
Jamie Boyd
Lydia Brenner
Angela Burger
Franck Cadoux
Roberto Cardella
David W. Casper
Charlotte Cavanagh
Xin Chen
Dhruv Chouhan
Andrea Coccaro
Stephane Débieux
Monica D’Onofrio
Ansh Desai
Sergey Dmitrievsky
Radu Dobre
Sinead Eley
Yannick Favre
Deion Fellers
Jonathan L. Feng
Carlo Alberto Fenoglio
Didier Ferrere
Max Fieg
Wissal Filali
Elena Firu
Edward Galantay
Ali Garabaglu
Stephen Gibson
Sergio Gonzalez-Sevilla
Yuri Gornushkin
Carl Gwilliam
Daiki Hayakawa
Michael Holzbock
Shih-Chieh Hsu
Zhen Hu
Giuseppe Iacobucci
Tomohiro Inada
Luca Iodice
Sune Jakobsen
Hans Joos
Enrique Kajomovitz
Hiroaki Kawahara
Alex Keyken
Felix Kling
Daniela Köck
Pantelis Kontaxakis
Umut Kose
Rafaella Kotitsa
Susanne Kuehn
Thanushan Kugathasan
Lorne Levinson
Ke Li
Jinfeng Liu
Yi Liu
Margaret S. Lutz
Jack MacDonald
Chiara Magliocca
Toni Mäkelä
Lawson McCoy
Josh McFayden
Andrea Pizarro Medina
Matteo Milanesio
Théo Moretti
Mitsuhiro Nakamura
Toshiyuki Nakano
Laurie Nevay
Ken Ohashi
Hidetoshi Otono
Hao Pang
Lorenzo Paolozzi
Pawan Pawan
Brian Petersen
Titi Preda
Markus Prim
Michaela Queitsch-Maitland
Hiroki Rokujo
André Rubbia
Jorge Sabater-Iglesias
Osamu Sato
Paola Scampoli
Kristof Schmieden
Matthias Schott
Anna Sfyrla
Davide Sgalaberna
Mansoora Shamim
Savannah Shively
Yosuke Takubo
Noshin Tarannum
Ondrej Theiner
Eric Torrence
Oscar Ivan Valdes Martinez
Svetlana Vasina
Benedikt Vormwald
Di Wang
Yuxiao Wang
Eli Welch
Monika Wielers
Yue Xu
Samuel Zahorec
Stefano Zambito
Shunliang Zhang
Title: First Measurement of the Muon Neutrino Interaction Cross Section and Flux as a Function of Energy at the LHC with FASER
Description:
This Letter presents the measurement of the energy-dependent neutrino-nucleon cross section in tungsten and the differential flux of muon neutrinos and antineutrinos.
The analysis is performed using proton-proton collision data at a center-of-mass energy of 13.
6 TeV and corresponding to an integrated luminosity of
(
65.
6
±
1.
4
)
fb
−
1
.
Using the active electronic components of the FASER detector,
338.
1
±
21.
0
charged current muon neutrino interaction events are identified, with backgrounds from other processes subtracted.
We unfold the neutrino events into a fiducial volume corresponding to the sensitive regions of the FASER detector and interpret the results in two ways: (i) we use the expected neutrino flux to measure the cross section, and (ii) we use the predicted cross section to measure the neutrino flux.
Both results are presented in six bins of neutrino energy, achieving the first differential measurement in the TeV range.
The observed distributions align with standard model predictions.
Using this differential data, we extract the contributions of neutrinos from pion and kaon decays.
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