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Measurement of the axial vector form factor from antineutrino–proton scattering
Scattering of high energy particles from nucleons probes their structure, as was done in the experiments that established the non-zero size of the proton using electron beams(1). The use of charged leptons as scattering probes enables measuring the distribution of electric charges, which is encoded...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group UK
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9892001/ https://www.ncbi.nlm.nih.gov/pubmed/36725994 http://dx.doi.org/10.1038/s41586-022-05478-3 |
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author | Cai, T. Moore, M. L. Olivier, A. Akhter, S. Dar, Z. Ahmad Ansari, V. Ascencio, M. V. Bashyal, A. Bercellie, A. Betancourt, M. Bodek, A. Bonilla, J. L. Bravar, A. Budd, H. Caceres, G. Carneiro, M. F. Díaz, G. A. da Motta, H. Felix, J. Fields, L. Filkins, A. Fine, R. Gago, A. M. Gallagher, H. Gilligan, S. M. Gran, R. Granados, E. Harris, D. A. Henry, S. Jena, D. Jena, S. Kleykamp, J. Klustová, A. Kordosky, M. Last, D. Le, T. Lozano, A. Lu, X.-G. Maher, E. Manly, S. Mann, W. A. Mauger, C. McFarland, K. S. Messerly, B. Miller, J. Moreno, O. Morfín, J. G. Naples, D. Nelson, J. K. Nguyen, C. Paolone, V. Perdue, G. N. Plows, K.-J. Ramírez, M. A. Ransome, R. D. Ray, H. Ruterbories, D. Schellman, H. Salinas, C. J. Solano Su, H. Sultana, M. Syrotenko, V. S. Valencia, E. Vaughan, N. H. Waldron, A. V. Wascko, M. O. Wret, C. Yaeggy, B. Zazueta, L. |
author_facet | Cai, T. Moore, M. L. Olivier, A. Akhter, S. Dar, Z. Ahmad Ansari, V. Ascencio, M. V. Bashyal, A. Bercellie, A. Betancourt, M. Bodek, A. Bonilla, J. L. Bravar, A. Budd, H. Caceres, G. Carneiro, M. F. Díaz, G. A. da Motta, H. Felix, J. Fields, L. Filkins, A. Fine, R. Gago, A. M. Gallagher, H. Gilligan, S. M. Gran, R. Granados, E. Harris, D. A. Henry, S. Jena, D. Jena, S. Kleykamp, J. Klustová, A. Kordosky, M. Last, D. Le, T. Lozano, A. Lu, X.-G. Maher, E. Manly, S. Mann, W. A. Mauger, C. McFarland, K. S. Messerly, B. Miller, J. Moreno, O. Morfín, J. G. Naples, D. Nelson, J. K. Nguyen, C. Paolone, V. Perdue, G. N. Plows, K.-J. Ramírez, M. A. Ransome, R. D. Ray, H. Ruterbories, D. Schellman, H. Salinas, C. J. Solano Su, H. Sultana, M. Syrotenko, V. S. Valencia, E. Vaughan, N. H. Waldron, A. V. Wascko, M. O. Wret, C. Yaeggy, B. Zazueta, L. |
author_sort | Cai, T. |
collection | PubMed |
description | Scattering of high energy particles from nucleons probes their structure, as was done in the experiments that established the non-zero size of the proton using electron beams(1). The use of charged leptons as scattering probes enables measuring the distribution of electric charges, which is encoded in the vector form factors of the nucleon(2). Scattering weakly interacting neutrinos gives the opportunity to measure both vector and axial vector form factors of the nucleon, providing an additional, complementary probe of their structure. The nucleon transition axial form factor, F(A), can be measured from neutrino scattering from free nucleons, ν(μ)n → μ(−)p and [Formula: see text] , as a function of the negative four-momentum transfer squared (Q(2)). Up to now, F(A)(Q(2)) has been extracted from the bound nucleons in neutrino–deuterium scattering(3–9), which requires uncertain nuclear corrections(10). Here we report the first high-statistics measurement, to our knowledge, of the [Formula: see text] cross-section from the hydrogen atom, using the plastic scintillator target of the MINERvA(11) experiment, extracting F(A) from free proton targets and measuring the nucleon axial charge radius, r(A), to be 0.73 ± 0.17 fm. The antineutrino–hydrogen scattering presented here can access the axial form factor without the need for nuclear theory corrections, and enables direct comparisons with the increasingly precise lattice quantum chromodynamics computations(12–15). Finally, the tools developed for this analysis and the result presented are substantial advancements in our capabilities to understand the nucleon structure in the weak sector, and also help the current and future neutrino oscillation experiments(16–20) to better constrain neutrino interaction models. |
format | Online Article Text |
id | pubmed-9892001 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Nature Publishing Group UK |
record_format | MEDLINE/PubMed |
spelling | pubmed-98920012023-02-03 Measurement of the axial vector form factor from antineutrino–proton scattering Cai, T. Moore, M. L. Olivier, A. Akhter, S. Dar, Z. Ahmad Ansari, V. Ascencio, M. V. Bashyal, A. Bercellie, A. Betancourt, M. Bodek, A. Bonilla, J. L. Bravar, A. Budd, H. Caceres, G. Carneiro, M. F. Díaz, G. A. da Motta, H. Felix, J. Fields, L. Filkins, A. Fine, R. Gago, A. M. Gallagher, H. Gilligan, S. M. Gran, R. Granados, E. Harris, D. A. Henry, S. Jena, D. Jena, S. Kleykamp, J. Klustová, A. Kordosky, M. Last, D. Le, T. Lozano, A. Lu, X.-G. Maher, E. Manly, S. Mann, W. A. Mauger, C. McFarland, K. S. Messerly, B. Miller, J. Moreno, O. Morfín, J. G. Naples, D. Nelson, J. K. Nguyen, C. Paolone, V. Perdue, G. N. Plows, K.-J. Ramírez, M. A. Ransome, R. D. Ray, H. Ruterbories, D. Schellman, H. Salinas, C. J. Solano Su, H. Sultana, M. Syrotenko, V. S. Valencia, E. Vaughan, N. H. Waldron, A. V. Wascko, M. O. Wret, C. Yaeggy, B. Zazueta, L. Nature Article Scattering of high energy particles from nucleons probes their structure, as was done in the experiments that established the non-zero size of the proton using electron beams(1). The use of charged leptons as scattering probes enables measuring the distribution of electric charges, which is encoded in the vector form factors of the nucleon(2). Scattering weakly interacting neutrinos gives the opportunity to measure both vector and axial vector form factors of the nucleon, providing an additional, complementary probe of their structure. The nucleon transition axial form factor, F(A), can be measured from neutrino scattering from free nucleons, ν(μ)n → μ(−)p and [Formula: see text] , as a function of the negative four-momentum transfer squared (Q(2)). Up to now, F(A)(Q(2)) has been extracted from the bound nucleons in neutrino–deuterium scattering(3–9), which requires uncertain nuclear corrections(10). Here we report the first high-statistics measurement, to our knowledge, of the [Formula: see text] cross-section from the hydrogen atom, using the plastic scintillator target of the MINERvA(11) experiment, extracting F(A) from free proton targets and measuring the nucleon axial charge radius, r(A), to be 0.73 ± 0.17 fm. The antineutrino–hydrogen scattering presented here can access the axial form factor without the need for nuclear theory corrections, and enables direct comparisons with the increasingly precise lattice quantum chromodynamics computations(12–15). Finally, the tools developed for this analysis and the result presented are substantial advancements in our capabilities to understand the nucleon structure in the weak sector, and also help the current and future neutrino oscillation experiments(16–20) to better constrain neutrino interaction models. Nature Publishing Group UK 2023-02-01 2023 /pmc/articles/PMC9892001/ /pubmed/36725994 http://dx.doi.org/10.1038/s41586-022-05478-3 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Article Cai, T. Moore, M. L. Olivier, A. Akhter, S. Dar, Z. Ahmad Ansari, V. Ascencio, M. V. Bashyal, A. Bercellie, A. Betancourt, M. Bodek, A. Bonilla, J. L. Bravar, A. Budd, H. Caceres, G. Carneiro, M. F. Díaz, G. A. da Motta, H. Felix, J. Fields, L. Filkins, A. Fine, R. Gago, A. M. Gallagher, H. Gilligan, S. M. Gran, R. Granados, E. Harris, D. A. Henry, S. Jena, D. Jena, S. Kleykamp, J. Klustová, A. Kordosky, M. Last, D. Le, T. Lozano, A. Lu, X.-G. Maher, E. Manly, S. Mann, W. A. Mauger, C. McFarland, K. S. Messerly, B. Miller, J. Moreno, O. Morfín, J. G. Naples, D. Nelson, J. K. Nguyen, C. Paolone, V. Perdue, G. N. Plows, K.-J. Ramírez, M. A. Ransome, R. D. Ray, H. Ruterbories, D. Schellman, H. Salinas, C. J. Solano Su, H. Sultana, M. Syrotenko, V. S. Valencia, E. Vaughan, N. H. Waldron, A. V. Wascko, M. O. Wret, C. Yaeggy, B. Zazueta, L. Measurement of the axial vector form factor from antineutrino–proton scattering |
title | Measurement of the axial vector form factor from antineutrino–proton scattering |
title_full | Measurement of the axial vector form factor from antineutrino–proton scattering |
title_fullStr | Measurement of the axial vector form factor from antineutrino–proton scattering |
title_full_unstemmed | Measurement of the axial vector form factor from antineutrino–proton scattering |
title_short | Measurement of the axial vector form factor from antineutrino–proton scattering |
title_sort | measurement of the axial vector form factor from antineutrino–proton scattering |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9892001/ https://www.ncbi.nlm.nih.gov/pubmed/36725994 http://dx.doi.org/10.1038/s41586-022-05478-3 |
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