Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

First Measurement of the Muon Neutrino Interaction Cross Section and Flux as a Function of Energy at the LHC with FASER

View through CrossRef
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.

Related Results

Detecting and studying high-energy collider neutrinos with FASER at the LHC
Detecting and studying high-energy collider neutrinos with FASER at the LHC
AbstractNeutrinos are copiously produced at particle colliders, but no collider neutrino has ever been detected. Colliders produce both neutrinos and anti-neutrinos of all flavors ...
Deep-inelastic scattering at TeV energies with LHC muons
Deep-inelastic scattering at TeV energies with LHC muons
Abstract The LHC far-forward experiments FASER and SND@LHC have pioneered the detection of TeV-energy neutrinos produced in hard-scattering proton-proton collisions at th...
Measurement of the muon flux at the SND@LHC experiment
Measurement of the muon flux at the SND@LHC experiment
Abstract The Scattering and Neutrino Detector at the LHC (SND@LHC) started taking data at the beginning of Run 3 of the LHC. The experiment i...
The FASER detector
The FASER detector
Abstract FASER, the ForwArd Search ExpeRiment, is an experiment dedicated to searching for light, extremely weakly-interacting particles at CERN's Large Hadron C...
First Measurement of ν e and ν
First Measurement of ν e and ν
The first results of the study of high-energy electron neutrino ( ν e ...
Investigating Sterile Neutrino Flux in the Solar Neutrino Data
Investigating Sterile Neutrino Flux in the Solar Neutrino Data
There are compelling evidences for the existence of a fourth degree of freedom of neutrinos, i.e., sterile neutrino. In the recent studies the role of sterile component of neutrino...

Back to Top