Measurement of the 12C(e,e′) Cross Sections at Q2=0.8GeV2/c2
We present the findings of a study based on a new inelastic electron-scattering experiment on the 12 C nucleus focusing on the kinematic region of Q 2 = 0.8 GeV 2 / c 2 . The measured cross section is sensitive to the transverse response function and provides a stringent test of theoretical models,...
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Veröffentlicht in: | Few-body systems 2024-09, Vol.65 (3), p.78 |
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creator | Mihovilovič, M. Doria, L. Achenbach, P. Ankowski, A. M. Bacca, S. Bosnar, D. Denig, A. Distler, M. O. Esser, A. Friščić, I. Giusti, C. Hoek, M. Kegel, S. Littich, M. Megias, G. D. Merkel, H. Müller, U. Pochodzalla, J. Schlimme, B. S. Schoth, M. Sfienti, C. Širca, S. Sobczyk, J. E. Stöttinger, Y. Thiel, M. |
description | We present the findings of a study based on a new inelastic electron-scattering experiment on the
12
C nucleus focusing on the kinematic region of
Q
2
=
0.8
GeV
2
/
c
2
. The measured cross section is sensitive to the transverse response function and provides a stringent test of theoretical models, as well as of the theoretical assumptions made in Monte-Carlo event-generator codes developed for the interpretation of neutrino-nucleus experiments, such as DUNE and HyperK. We find that modern generators such as GENIE and GiBUU reproduce our new experimental data within 10
%
. |
doi_str_mv | 10.1007/s00601-024-01944-y |
format | Article |
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12
C nucleus focusing on the kinematic region of
Q
2
=
0.8
GeV
2
/
c
2
. The measured cross section is sensitive to the transverse response function and provides a stringent test of theoretical models, as well as of the theoretical assumptions made in Monte-Carlo event-generator codes developed for the interpretation of neutrino-nucleus experiments, such as DUNE and HyperK. We find that modern generators such as GENIE and GiBUU reproduce our new experimental data within 10
%
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12
C nucleus focusing on the kinematic region of
Q
2
=
0.8
GeV
2
/
c
2
. The measured cross section is sensitive to the transverse response function and provides a stringent test of theoretical models, as well as of the theoretical assumptions made in Monte-Carlo event-generator codes developed for the interpretation of neutrino-nucleus experiments, such as DUNE and HyperK. We find that modern generators such as GENIE and GiBUU reproduce our new experimental data within 10
%
.</description><subject>Atomic</subject><subject>Carbon</subject><subject>Cross-sections</subject><subject>Energy</subject><subject>Experiments</subject><subject>Hadrons</subject><subject>Heavy Ions</subject><subject>Inelastic scattering</subject><subject>Kinematics</subject><subject>Molecular</subject><subject>Neutrinos</subject><subject>Nuclear Physics</subject><subject>Optical and Plasma Physics</subject><subject>Particle and Nuclear Physics</subject><subject>Physics</subject><subject>Physics and Astronomy</subject><subject>Response functions</subject><subject>Sensors</subject><issn>0177-7963</issn><issn>1432-5411</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2024</creationdate><recordtype>article</recordtype><sourceid>C6C</sourceid><recordid>eNpFkM1Kw0AUhQdRMFZfwNWAGwWnvffOJJNZKEjQKlRE_NkOSbzRFk1qJll05zP5SD6J0QquzubjnMMnxD7CGAHsJAAkgArIKEBnjFptiAiNJhUbxE0RAVqrrEv0ttgJYQGAsUOIxOk156Fv-Y3rTjaV7F5YImWHfMxfH59HMmubEOQdl928qYPMO3lLJzBOp_xIk5J2xVaVvwbe-8uReLg4v88u1exmepWdzdQSDa2UwTxhUyISOwOxS1McfhE5ExvnHKYV65ILKpDpKXFOYw6xrYrUomZOtB6Jg3Xvsm3eew6dXzR9Ww-TXkNqYViheKD0mgrLdl4_c_tPIfgfUX4tyg-i_K8ov9Lf7RdXjQ</recordid><startdate>20240901</startdate><enddate>20240901</enddate><creator>Mihovilovič, M.</creator><creator>Doria, L.</creator><creator>Achenbach, P.</creator><creator>Ankowski, A. 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M. ; Bacca, S. ; Bosnar, D. ; Denig, A. ; Distler, M. O. ; Esser, A. ; Friščić, I. ; Giusti, C. ; Hoek, M. ; Kegel, S. ; Littich, M. ; Megias, G. D. ; Merkel, H. ; Müller, U. ; Pochodzalla, J. ; Schlimme, B. S. ; Schoth, M. ; Sfienti, C. ; Širca, S. ; Sobczyk, J. 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12
C nucleus focusing on the kinematic region of
Q
2
=
0.8
GeV
2
/
c
2
. The measured cross section is sensitive to the transverse response function and provides a stringent test of theoretical models, as well as of the theoretical assumptions made in Monte-Carlo event-generator codes developed for the interpretation of neutrino-nucleus experiments, such as DUNE and HyperK. We find that modern generators such as GENIE and GiBUU reproduce our new experimental data within 10
%
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language | eng |
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source | Springer Nature - Complete Springer Journals |
subjects | Atomic Carbon Cross-sections Energy Experiments Hadrons Heavy Ions Inelastic scattering Kinematics Molecular Neutrinos Nuclear Physics Optical and Plasma Physics Particle and Nuclear Physics Physics Physics and Astronomy Response functions Sensors |
title | Measurement of the 12C(e,e′) Cross Sections at Q2=0.8GeV2/c2 |
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