Measurement of the generalized spin polarizabilities of the neutron in the low-$Q^2$ region

Understanding the nucleon spin structure in the regime where the strong interaction becomes truly strong poses a challenge to both experiment and theory. At energy scales below the nucleon mass of about 1 GeV, the intense interaction among the quarks and gluons inside the nucleon makes them highly c...

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Veröffentlicht in:Nature physics 2021, Vol.17 (6), p.687-692
Hauptverfasser: Sulkosky, Vincent, Peng, Chao, Chen, Jian-Ping, Deur, Alexandre, Abrahamyan, Sergey, Aniol, Konrad A., Armstrong, David S., Averett, Todd, Bailey, Stephen J., Beck, Arie, Bertin, Pierre, Butaru, Florentin, Boeglin, Werner, Camsonne, Alexandre, Cates, Gordon D., Chang, Chia-Cheh, Choi, Seonho, Chudakov, Eugene, Coman, Luminita, Cornejo, Juan C., Craver, Brandon, Cusanno, Francesco, de Leo, Raffaele, de Jager, Cornelis W., Denton, Joseph D., Dhamija, Seema, Feuerbach, Robert, Finn, John M., Frullani, Salvatore, Fuoti, Kirsten, Gao, Haiyan, Garibaldi, Franco, Gayou, Olivier, Gilman, Ronald, Glamazdin, Alexander, Glashausser, Charles, Gomez, Javier, Hansen, Jens-Ole, Hayes, David, Hersman, F. William, Higinbotham, Douglas W., Holmstrom, Timothy, Humensky, Thomas B., Hyde, Charles E., Ibrahim, Hassan, Iodice, Mauro, Jiang, Xiandong, Kaufman, Lisa J., Kelleher, Aidan, Keister, Kathryn E., Kim, Wooyoung, Kolarkar, Ameya, Kolb, Norm, Korsch, Wolfgang, Kramer, Kevin, Kumbartzki, Gerfried, Lagamba, Luigi, Lainé, Vivien, Laveissiere, Geraud, Lerose, John J., Lhuillier, David, Lindgren, Richard, Liyanage, Nilanga, Lu, Hai-Jiang, Ma, Bin, Margaziotis, Demetrius J., Markowitz, Peter, Mccormick, Kathleen R., Meziane, Mehdi, Meziani, Zein-Eddine, Michaels, Robert, Moffit, Bryan, Monaghan, Peter, Nanda, Sirish, Niedziela, Jennifer, Niskin, Mikhail, Pandolfi, Ronald, Paschke, Kent D., Potokar, Milan, Puckett, Andrew, Punjabi, Vina A., Qiang, Yi, Ransome, Ronald D., Reitz, Bodo, Roché, Rikki, Saha, Arun, Shabetai, Alexander, Širca, Simon, Singh, Jaideep T., Slifer, Karl, Snyder, Ryan, Solvignon, Patricia, Stringer, Robert, Subedi, Ramesh, Tobias, William A., Ton, Ngyen, Ulmer, Paul E., Urciuoli, Guido Maria, Voutier, Eric, Wang, Kebin
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container_issue 6
container_start_page 687
container_title Nature physics
container_volume 17
creator Sulkosky, Vincent
Peng, Chao
Chen, Jian-Ping
Deur, Alexandre
Abrahamyan, Sergey
Aniol, Konrad A.
Armstrong, David S.
Averett, Todd
Bailey, Stephen J.
Beck, Arie
Bertin, Pierre
Butaru, Florentin
Boeglin, Werner
Camsonne, Alexandre
Cates, Gordon D.
Chang, Chia-Cheh
Choi, Seonho
Chudakov, Eugene
Coman, Luminita
Cornejo, Juan C.
Craver, Brandon
Cusanno, Francesco
de Leo, Raffaele
de Jager, Cornelis W.
Denton, Joseph D.
Dhamija, Seema
Feuerbach, Robert
Finn, John M.
Frullani, Salvatore
Fuoti, Kirsten
Gao, Haiyan
Garibaldi, Franco
Gayou, Olivier
Gilman, Ronald
Glamazdin, Alexander
Glashausser, Charles
Gomez, Javier
Hansen, Jens-Ole
Hayes, David
Hersman, F. William
Higinbotham, Douglas W.
Holmstrom, Timothy
Humensky, Thomas B.
Hyde, Charles E.
Ibrahim, Hassan
Iodice, Mauro
Jiang, Xiandong
Kaufman, Lisa J.
Kelleher, Aidan
Keister, Kathryn E.
Kim, Wooyoung
Kolarkar, Ameya
Kolb, Norm
Korsch, Wolfgang
Kramer, Kevin
Kumbartzki, Gerfried
Lagamba, Luigi
Lainé, Vivien
Laveissiere, Geraud
Lerose, John J.
Lhuillier, David
Lindgren, Richard
Liyanage, Nilanga
Lu, Hai-Jiang
Ma, Bin
Margaziotis, Demetrius J.
Markowitz, Peter
Mccormick, Kathleen R.
Meziane, Mehdi
Meziani, Zein-Eddine
Michaels, Robert
Moffit, Bryan
Monaghan, Peter
Nanda, Sirish
Niedziela, Jennifer
Niskin, Mikhail
Pandolfi, Ronald
Paschke, Kent D.
Potokar, Milan
Puckett, Andrew
Punjabi, Vina A.
Qiang, Yi
Ransome, Ronald D.
Reitz, Bodo
Roché, Rikki
Saha, Arun
Shabetai, Alexander
Širca, Simon
Singh, Jaideep T.
Slifer, Karl
Snyder, Ryan
Solvignon, Patricia
Stringer, Robert
Subedi, Ramesh
Tobias, William A.
Ton, Ngyen
Ulmer, Paul E.
Urciuoli, Guido Maria
Voutier, Eric
Wang, Kebin
description Understanding the nucleon spin structure in the regime where the strong interaction becomes truly strong poses a challenge to both experiment and theory. At energy scales below the nucleon mass of about 1 GeV, the intense interaction among the quarks and gluons inside the nucleon makes them highly correlated. Their coherent behaviour causes the emergence of effective degrees of freedom, requiring the application of non-perturbative techniques such as chiral effective field theory1. Here we present measurements of the neutron’s generalized spin polarizabilities that quantify the neutron’s spin precession under electromagnetic fields at very low energy-momentum transfer squared down to 0.035 GeV2. In this regime, chiral effective field theory calculations2,3,4 are expected to be applicable. Our data, however, show a strong discrepancy with these predictions, presenting a challenge to the current description of the neutron’s spin properties.
doi_str_mv 10.1038/s41567-021-01245-9
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At energy scales below the nucleon mass of about 1 GeV, the intense interaction among the quarks and gluons inside the nucleon makes them highly correlated. Their coherent behaviour causes the emergence of effective degrees of freedom, requiring the application of non-perturbative techniques such as chiral effective field theory1. Here we present measurements of the neutron’s generalized spin polarizabilities that quantify the neutron’s spin precession under electromagnetic fields at very low energy-momentum transfer squared down to 0.035 GeV2. In this regime, chiral effective field theory calculations2,3,4 are expected to be applicable. Our data, however, show a strong discrepancy with these predictions, presenting a challenge to the current description of the neutron’s spin properties.</description><subject>General Physics</subject><subject>Physics</subject><issn>1745-2473</issn><issn>1476-4636</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2021</creationdate><recordtype>article</recordtype><recordid>eNqVistqAjEYRoNU8PoCrrJw4yI1t8lMl0UqLupCcCc4RPzVX2IyJGNLfXpH0Afo6jvf4RAyEvxdcFVMkxaZyRmXgnEhdcY-WqQrdG6YNsq8NZw3UupcdUgvpTPnWhqhumSzBJuuES7gaxoOtD4BPYKHaB3eYE9ThZ5WwdmIN7tDhzVCeoUernUMnjbJ47rwy8arrRzTCEcMfkDaB-sSDJ_bJ5P513q2YCfryirixca_MlgsF5_f5cNxJY3KiuJHqP-0dxsqTT8</recordid><startdate>2021</startdate><enddate>2021</enddate><creator>Sulkosky, Vincent</creator><creator>Peng, Chao</creator><creator>Chen, Jian-Ping</creator><creator>Deur, Alexandre</creator><creator>Abrahamyan, Sergey</creator><creator>Aniol, Konrad A.</creator><creator>Armstrong, David S.</creator><creator>Averett, Todd</creator><creator>Bailey, Stephen J.</creator><creator>Beck, Arie</creator><creator>Bertin, Pierre</creator><creator>Butaru, Florentin</creator><creator>Boeglin, Werner</creator><creator>Camsonne, Alexandre</creator><creator>Cates, Gordon D.</creator><creator>Chang, Chia-Cheh</creator><creator>Choi, Seonho</creator><creator>Chudakov, Eugene</creator><creator>Coman, Luminita</creator><creator>Cornejo, Juan C.</creator><creator>Craver, Brandon</creator><creator>Cusanno, Francesco</creator><creator>de Leo, Raffaele</creator><creator>de Jager, Cornelis W.</creator><creator>Denton, Joseph D.</creator><creator>Dhamija, Seema</creator><creator>Feuerbach, Robert</creator><creator>Finn, John M.</creator><creator>Frullani, Salvatore</creator><creator>Fuoti, Kirsten</creator><creator>Gao, Haiyan</creator><creator>Garibaldi, Franco</creator><creator>Gayou, Olivier</creator><creator>Gilman, Ronald</creator><creator>Glamazdin, Alexander</creator><creator>Glashausser, Charles</creator><creator>Gomez, Javier</creator><creator>Hansen, Jens-Ole</creator><creator>Hayes, David</creator><creator>Hersman, F. 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William ; Higinbotham, Douglas W. ; Holmstrom, Timothy ; Humensky, Thomas B. ; Hyde, Charles E. ; Ibrahim, Hassan ; Iodice, Mauro ; Jiang, Xiandong ; Kaufman, Lisa J. ; Kelleher, Aidan ; Keister, Kathryn E. ; Kim, Wooyoung ; Kolarkar, Ameya ; Kolb, Norm ; Korsch, Wolfgang ; Kramer, Kevin ; Kumbartzki, Gerfried ; Lagamba, Luigi ; Lainé, Vivien ; Laveissiere, Geraud ; Lerose, John J. ; Lhuillier, David ; Lindgren, Richard ; Liyanage, Nilanga ; Lu, Hai-Jiang ; Ma, Bin ; Margaziotis, Demetrius J. ; Markowitz, Peter ; Mccormick, Kathleen R. ; Meziane, Mehdi ; Meziani, Zein-Eddine ; Michaels, Robert ; Moffit, Bryan ; Monaghan, Peter ; Nanda, Sirish ; Niedziela, Jennifer ; Niskin, Mikhail ; Pandolfi, Ronald ; Paschke, Kent D. ; Potokar, Milan ; Puckett, Andrew ; Punjabi, Vina A. ; Qiang, Yi ; Ransome, Ronald D. ; Reitz, Bodo ; Roché, Rikki ; Saha, Arun ; Shabetai, Alexander ; Širca, Simon ; Singh, Jaideep T. ; Slifer, Karl ; Snyder, Ryan ; Solvignon, Patricia ; Stringer, Robert ; Subedi, Ramesh ; Tobias, William A. ; Ton, Ngyen ; Ulmer, Paul E. ; Urciuoli, Guido Maria ; Voutier, Eric ; Wang, Kebin</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-hal_primary_oai_HAL_hal_03263588v13</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2021</creationdate><topic>General Physics</topic><topic>Physics</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Sulkosky, Vincent</creatorcontrib><creatorcontrib>Peng, Chao</creatorcontrib><creatorcontrib>Chen, Jian-Ping</creatorcontrib><creatorcontrib>Deur, Alexandre</creatorcontrib><creatorcontrib>Abrahamyan, Sergey</creatorcontrib><creatorcontrib>Aniol, Konrad A.</creatorcontrib><creatorcontrib>Armstrong, David S.</creatorcontrib><creatorcontrib>Averett, Todd</creatorcontrib><creatorcontrib>Bailey, Stephen J.</creatorcontrib><creatorcontrib>Beck, Arie</creatorcontrib><creatorcontrib>Bertin, Pierre</creatorcontrib><creatorcontrib>Butaru, Florentin</creatorcontrib><creatorcontrib>Boeglin, Werner</creatorcontrib><creatorcontrib>Camsonne, Alexandre</creatorcontrib><creatorcontrib>Cates, Gordon D.</creatorcontrib><creatorcontrib>Chang, Chia-Cheh</creatorcontrib><creatorcontrib>Choi, Seonho</creatorcontrib><creatorcontrib>Chudakov, Eugene</creatorcontrib><creatorcontrib>Coman, Luminita</creatorcontrib><creatorcontrib>Cornejo, Juan C.</creatorcontrib><creatorcontrib>Craver, Brandon</creatorcontrib><creatorcontrib>Cusanno, Francesco</creatorcontrib><creatorcontrib>de Leo, Raffaele</creatorcontrib><creatorcontrib>de Jager, Cornelis W.</creatorcontrib><creatorcontrib>Denton, Joseph D.</creatorcontrib><creatorcontrib>Dhamija, Seema</creatorcontrib><creatorcontrib>Feuerbach, Robert</creatorcontrib><creatorcontrib>Finn, John M.</creatorcontrib><creatorcontrib>Frullani, Salvatore</creatorcontrib><creatorcontrib>Fuoti, Kirsten</creatorcontrib><creatorcontrib>Gao, Haiyan</creatorcontrib><creatorcontrib>Garibaldi, Franco</creatorcontrib><creatorcontrib>Gayou, Olivier</creatorcontrib><creatorcontrib>Gilman, Ronald</creatorcontrib><creatorcontrib>Glamazdin, Alexander</creatorcontrib><creatorcontrib>Glashausser, Charles</creatorcontrib><creatorcontrib>Gomez, Javier</creatorcontrib><creatorcontrib>Hansen, Jens-Ole</creatorcontrib><creatorcontrib>Hayes, David</creatorcontrib><creatorcontrib>Hersman, F. 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William</au><au>Higinbotham, Douglas W.</au><au>Holmstrom, Timothy</au><au>Humensky, Thomas B.</au><au>Hyde, Charles E.</au><au>Ibrahim, Hassan</au><au>Iodice, Mauro</au><au>Jiang, Xiandong</au><au>Kaufman, Lisa J.</au><au>Kelleher, Aidan</au><au>Keister, Kathryn E.</au><au>Kim, Wooyoung</au><au>Kolarkar, Ameya</au><au>Kolb, Norm</au><au>Korsch, Wolfgang</au><au>Kramer, Kevin</au><au>Kumbartzki, Gerfried</au><au>Lagamba, Luigi</au><au>Lainé, Vivien</au><au>Laveissiere, Geraud</au><au>Lerose, John J.</au><au>Lhuillier, David</au><au>Lindgren, Richard</au><au>Liyanage, Nilanga</au><au>Lu, Hai-Jiang</au><au>Ma, Bin</au><au>Margaziotis, Demetrius J.</au><au>Markowitz, Peter</au><au>Mccormick, Kathleen R.</au><au>Meziane, Mehdi</au><au>Meziani, Zein-Eddine</au><au>Michaels, Robert</au><au>Moffit, Bryan</au><au>Monaghan, Peter</au><au>Nanda, Sirish</au><au>Niedziela, Jennifer</au><au>Niskin, Mikhail</au><au>Pandolfi, Ronald</au><au>Paschke, Kent D.</au><au>Potokar, Milan</au><au>Puckett, Andrew</au><au>Punjabi, Vina A.</au><au>Qiang, Yi</au><au>Ransome, Ronald D.</au><au>Reitz, Bodo</au><au>Roché, Rikki</au><au>Saha, Arun</au><au>Shabetai, Alexander</au><au>Širca, Simon</au><au>Singh, Jaideep T.</au><au>Slifer, Karl</au><au>Snyder, Ryan</au><au>Solvignon, Patricia</au><au>Stringer, Robert</au><au>Subedi, Ramesh</au><au>Tobias, William A.</au><au>Ton, Ngyen</au><au>Ulmer, Paul E.</au><au>Urciuoli, Guido Maria</au><au>Voutier, Eric</au><au>Wang, Kebin</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Measurement of the generalized spin polarizabilities of the neutron in the low-$Q^2$ region</atitle><jtitle>Nature physics</jtitle><date>2021</date><risdate>2021</risdate><volume>17</volume><issue>6</issue><spage>687</spage><epage>692</epage><pages>687-692</pages><issn>1745-2473</issn><eissn>1476-4636</eissn><abstract>Understanding the nucleon spin structure in the regime where the strong interaction becomes truly strong poses a challenge to both experiment and theory. At energy scales below the nucleon mass of about 1 GeV, the intense interaction among the quarks and gluons inside the nucleon makes them highly correlated. Their coherent behaviour causes the emergence of effective degrees of freedom, requiring the application of non-perturbative techniques such as chiral effective field theory1. Here we present measurements of the neutron’s generalized spin polarizabilities that quantify the neutron’s spin precession under electromagnetic fields at very low energy-momentum transfer squared down to 0.035 GeV2. In this regime, chiral effective field theory calculations2,3,4 are expected to be applicable. Our data, however, show a strong discrepancy with these predictions, presenting a challenge to the current description of the neutron’s spin properties.</abstract><pub>Nature Publishing Group [2005-....]</pub><doi>10.1038/s41567-021-01245-9</doi><orcidid>https://orcid.org/0000-0003-4990-3369</orcidid><orcidid>https://orcid.org/0000-0003-0779-4037</orcidid><orcidid>https://orcid.org/0000-0003-3069-726X</orcidid><orcidid>https://orcid.org/0000-0003-4990-3369</orcidid><orcidid>https://orcid.org/0000-0003-3069-726X</orcidid><orcidid>https://orcid.org/0000-0003-0779-4037</orcidid></addata></record>
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title Measurement of the generalized spin polarizabilities of the neutron in the low-$Q^2$ region
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