Cargando…
A re-evaluation of the nuclear structure function ratios for D, He, Li C and Ca
We present a re-evaluation of the structure function ratios F2(He)/F2(D), F2(C)/F2(D) and F2(Ca)/F2(D) measured in deep inelastic muon-nucleus scattering at an incident muon momentum of 200 GeV. We also present the ratios F2(C)/F2(Li), F2(Ca)/F2(Li) and F2(Ca)/F2(C) measured at 90 GeV. The results a...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Lenguaje: | eng |
Publicado: |
1995
|
Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/0550-3213(94)00023-9 http://cds.cern.ch/record/278439 |
_version_ | 1780887736596561920 |
---|---|
author | Amaudruz, P. Arneodo, M. Arvidson, A. Badelek, B. Ballintijn, M. Baum, G. Beaufays, J. Bird, I.G. Björkholm, P. Botje, M. Broggini, C. Brückner, W. Brüll, A. Burger, W.J. Ciborowski, J. van Dantzig, R. Döbbeling, H. Domingo, J. Drinkard, J. Dyring, A. Engelien, H. Ferrero, M.I. Fluri, L. Gaul, U. Grafstrom, P. Granier, T. von Harrach, D. van der Heijden, M. Heusch, C. Ingram, Q. Janson-Prytz, K. de Jong, M. Kabuβ, E.M. Kaiser, R. Ketel, T.J. Klein, F. Korzen, B. Krüner, U. Kullander, S. Landgraf, U. Lettenström, F. Lindqvist, T. Mallot, G.K. Mariotti, C. van Middelkoop, G. Milsztajn, A. Mizuno, Y. Most, A. Mücklich, A. Nassalski, J. Nowotny, D. Pavel, N. Oberski, J. Paić, A. Peroni, C. Peschel, H. Povh, B. Rieger, R. Rith, K. Röhrich, K. Rondio, E. Ropelewski, L. Sandacz, A. Sanders, D. Scholz, C. Schumacher, R. Seitz, R. Sennhauser, U. Sever, F. Shibata, T.-A. Siebler, M. Simon, A. Staiano, A. Szleper, M. Taylor, G. Treichel, M. Tzamouranis, Y. Virchaux, M. Vuilleumier, J.L. Walcher, T. Windmolders, R. Witzmann, A. Zetsche, F. |
author_facet | Amaudruz, P. Arneodo, M. Arvidson, A. Badelek, B. Ballintijn, M. Baum, G. Beaufays, J. Bird, I.G. Björkholm, P. Botje, M. Broggini, C. Brückner, W. Brüll, A. Burger, W.J. Ciborowski, J. van Dantzig, R. Döbbeling, H. Domingo, J. Drinkard, J. Dyring, A. Engelien, H. Ferrero, M.I. Fluri, L. Gaul, U. Grafstrom, P. Granier, T. von Harrach, D. van der Heijden, M. Heusch, C. Ingram, Q. Janson-Prytz, K. de Jong, M. Kabuβ, E.M. Kaiser, R. Ketel, T.J. Klein, F. Korzen, B. Krüner, U. Kullander, S. Landgraf, U. Lettenström, F. Lindqvist, T. Mallot, G.K. Mariotti, C. van Middelkoop, G. Milsztajn, A. Mizuno, Y. Most, A. Mücklich, A. Nassalski, J. Nowotny, D. Pavel, N. Oberski, J. Paić, A. Peroni, C. Peschel, H. Povh, B. Rieger, R. Rith, K. Röhrich, K. Rondio, E. Ropelewski, L. Sandacz, A. Sanders, D. Scholz, C. Schumacher, R. Seitz, R. Sennhauser, U. Sever, F. Shibata, T.-A. Siebler, M. Simon, A. Staiano, A. Szleper, M. Taylor, G. Treichel, M. Tzamouranis, Y. Virchaux, M. Vuilleumier, J.L. Walcher, T. Windmolders, R. Witzmann, A. Zetsche, F. |
author_sort | Amaudruz, P. |
collection | CERN |
description | We present a re-evaluation of the structure function ratios F2(He)/F2(D), F2(C)/F2(D) and F2(Ca)/F2(D) measured in deep inelastic muon-nucleus scattering at an incident muon momentum of 200 GeV. We also present the ratios F2(C)/F2(Li), F2(Ca)/F2(Li) and F2(Ca)/F2(C) measured at 90 GeV. The results are based on data already published by NMC; the main difference in the analysis is a correction for the masses of the deuterium targets and an improvement in the radiative corrections. The kinematic range covered is 0.0035 < x < 0.65, 0.5 < Q^2 <90 GeV^2 for the He/D, C/D and Ca/D data and 0.0085 < x < 0.6, 0.84 < Q^2 < 17 GeV^2 for the Li/C/Ca ones. |
id | cern-278439 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 1995 |
record_format | invenio |
spelling | cern-2784392021-11-24T03:10:01Zdoi:10.1016/0550-3213(94)00023-9http://cds.cern.ch/record/278439engAmaudruz, P.Arneodo, M.Arvidson, A.Badelek, B.Ballintijn, M.Baum, G.Beaufays, J.Bird, I.G.Björkholm, P.Botje, M.Broggini, C.Brückner, W.Brüll, A.Burger, W.J.Ciborowski, J.van Dantzig, R.Döbbeling, H.Domingo, J.Drinkard, J.Dyring, A.Engelien, H.Ferrero, M.I.Fluri, L.Gaul, U.Grafstrom, P.Granier, T.von Harrach, D.van der Heijden, M.Heusch, C.Ingram, Q.Janson-Prytz, K.de Jong, M.Kabuβ, E.M.Kaiser, R.Ketel, T.J.Klein, F.Korzen, B.Krüner, U.Kullander, S.Landgraf, U.Lettenström, F.Lindqvist, T.Mallot, G.K.Mariotti, C.van Middelkoop, G.Milsztajn, A.Mizuno, Y.Most, A.Mücklich, A.Nassalski, J.Nowotny, D.Pavel, N.Oberski, J.Paić, A.Peroni, C.Peschel, H.Povh, B.Rieger, R.Rith, K.Röhrich, K.Rondio, E.Ropelewski, L.Sandacz, A.Sanders, D.Scholz, C.Schumacher, R.Seitz, R.Sennhauser, U.Sever, F.Shibata, T.-A.Siebler, M.Simon, A.Staiano, A.Szleper, M.Taylor, G.Treichel, M.Tzamouranis, Y.Virchaux, M.Vuilleumier, J.L.Walcher, T.Windmolders, R.Witzmann, A.Zetsche, F.A re-evaluation of the nuclear structure function ratios for D, He, Li C and CaParticle Physics - ExperimentWe present a re-evaluation of the structure function ratios F2(He)/F2(D), F2(C)/F2(D) and F2(Ca)/F2(D) measured in deep inelastic muon-nucleus scattering at an incident muon momentum of 200 GeV. We also present the ratios F2(C)/F2(Li), F2(Ca)/F2(Li) and F2(Ca)/F2(C) measured at 90 GeV. The results are based on data already published by NMC; the main difference in the analysis is a correction for the masses of the deuterium targets and an improvement in the radiative corrections. The kinematic range covered is 0.0035 < x < 0.65, 0.5 < Q^2 <90 GeV^2 for the He/D, C/D and Ca/D data and 0.0085 < x < 0.6, 0.84 < Q^2 < 17 GeV^2 for the Li/C/Ca ones.We present a re-evaluation of the structure function ratios F2(He)/F2(D), F2(C)/F2(D) and F2(Ca)/F2(D) measured in deep inelastic muon-nucleus scattering at an incident muon momentum of 200 GeV. We also present the ratios F2(C)/F2(Li), F2(Ca)/F2(Li) and F2(Ca)/F2(C) measured at 90 GeV. The results are based on data already published by NMC; the main difference in the analysis is a correction for the masses of the deuterium targets and an improvement in the radiative corrections. The kinematic range covered is 0.0035 < x < 0.65, 0.5 < Q~2 <90 GeV~2 for the He/D, C/D and Ca/D data and 0.0085 < x < 0.6, 0.84 < Q~2 < 17 GeV~2 for the Li/C/Ca ones.We present a re-evaluation of the structure function ratios F2(He)/F2(D), F2(C)/F2(D) and F2(Ca)/F2(D) measured in deep inelastic muon-nucleus scattering at an incident muon momentum of 200 GeV. We also present the ratios F2(C)/F2(Li), F2(Ca)/F2(Li) and F2(Ca)/F2(C) measured at 90 GeV. The results are based on data already published by NMC; the main difference in the analysis is a correction for the masses of the deuterium targets and an improvement in the radiative corrections. The kinematic range covered is 0.0035 < x < 0.65, 0.5 < Q~2 <90 GeV~2 for the He/D, C/D and Ca/D data and 0.0085 < x < 0.6, 0.84 < Q~2 < 17 GeV~2 for the Li/C/Ca ones.We present a re-evaluation of the structure function ratios F2(He)/F2(D), F2(C)/F2(D) and F2(Ca)/F2(D) measured in deep inelastic muon-nucleus scattering at an incident muon momentum of 200 GeV. We also present the ratios F2(C)/F2(Li), F2(Ca)/F2(Li) and F2(Ca)/F2(C) measured at 90 GeV. The results are based on data already published by NMC; the main difference in the analysis is a correction for the masses of the deuterium targets and an improvement in the radiative corrections. The kinematic range covered is 0.0035 < x < 0.65, 0.5 < Q~2 <90 GeV~2 for the He/D, C/D and Ca/D data and 0.0085 < x < 0.6, 0.84 < Q~2 < 17 GeV~2 for the Li/C/Ca ones.We present a re-evaluation of the structure function ratios F2(He)/F2(D), F2(C)/F2(D) and F2(Ca)/F2(D) measured in deep inelastic muon-nucleus scattering at an incident muon momentum of 200 GeV. We also present the ratios F2(C)/F2(Li), F2(Ca)/F2(Li) and F2(Ca)/F2(C) measured at 90 GeV. The results are based on data already published by NMC; the main difference in the analysis is a correction for the masses of the deuterium targets and an improvement in the radiative corrections. The kinematic range covered is 0.0035 < x < 0.65, 0.5 < Q~2 <90 GeV~2 for the He/D, C/D and Ca/D data and 0.0085 < x < 0.6, 0.84 < Q~2 < 17 GeV~2 for the Li/C/Ca ones.We present a re-evaluation of the structure function ratios F 2 He / F 2 D , F 2 C / F 2 D and F 2 Ca / F 2 D measured in deep inelastic muon-nucleus scattering at an incident muon momentum of 200 GeV. We also present the ratios F 2 C / F 2 Li , F 2 Ca / F 2 Li and F 2 Ca / F 2 C measured at 90 GeV. The results are based on data already published by NMC; the main difference in the analysis is a correction for the masses of the deuterium targets and an improvement in the radiative corrections. The kinematic range covered is 0.0035 < x < 0.65 < Q 2 < 90 GeV 2 for the He/D, C/D and Ca/D data and 0.0085 < x < 0.6, 0.84 < Q 2 < 17 GeV 2 for the Li/C/Ca ones.We present a re-evaluation of the structure function ratios F2(He)/F2(D), F2(C)/F2(D) and F2(Ca)/F2(D) measured in deep inelastic muon-nucleus scattering at an incident muon momentum of 200 GeV. We also present the ratios F2(C)/F2(Li), F2(Ca)/F2(Li) and F2(Ca)/F2(C) measured at 90 GeV. The results are based on data already published by NMC; the main difference in the analysis is a correction for the masses of the deuterium targets and an improvement in the radiative corrections. The kinematic range covered is 0.0035 < x < 0.65, 0.5 < Q^2 <90 GeV^2 for the He/D, C/D and Ca/D data and 0.0085 < x < 0.6, 0.84 < Q^2 < 17 GeV^2 for the Li/C/Ca ones.hep-ph/9503291oai:cds.cern.ch:2784391995 |
spellingShingle | Particle Physics - Experiment Amaudruz, P. Arneodo, M. Arvidson, A. Badelek, B. Ballintijn, M. Baum, G. Beaufays, J. Bird, I.G. Björkholm, P. Botje, M. Broggini, C. Brückner, W. Brüll, A. Burger, W.J. Ciborowski, J. van Dantzig, R. Döbbeling, H. Domingo, J. Drinkard, J. Dyring, A. Engelien, H. Ferrero, M.I. Fluri, L. Gaul, U. Grafstrom, P. Granier, T. von Harrach, D. van der Heijden, M. Heusch, C. Ingram, Q. Janson-Prytz, K. de Jong, M. Kabuβ, E.M. Kaiser, R. Ketel, T.J. Klein, F. Korzen, B. Krüner, U. Kullander, S. Landgraf, U. Lettenström, F. Lindqvist, T. Mallot, G.K. Mariotti, C. van Middelkoop, G. Milsztajn, A. Mizuno, Y. Most, A. Mücklich, A. Nassalski, J. Nowotny, D. Pavel, N. Oberski, J. Paić, A. Peroni, C. Peschel, H. Povh, B. Rieger, R. Rith, K. Röhrich, K. Rondio, E. Ropelewski, L. Sandacz, A. Sanders, D. Scholz, C. Schumacher, R. Seitz, R. Sennhauser, U. Sever, F. Shibata, T.-A. Siebler, M. Simon, A. Staiano, A. Szleper, M. Taylor, G. Treichel, M. Tzamouranis, Y. Virchaux, M. Vuilleumier, J.L. Walcher, T. Windmolders, R. Witzmann, A. Zetsche, F. A re-evaluation of the nuclear structure function ratios for D, He, Li C and Ca |
title | A re-evaluation of the nuclear structure function ratios for D, He, Li C and Ca |
title_full | A re-evaluation of the nuclear structure function ratios for D, He, Li C and Ca |
title_fullStr | A re-evaluation of the nuclear structure function ratios for D, He, Li C and Ca |
title_full_unstemmed | A re-evaluation of the nuclear structure function ratios for D, He, Li C and Ca |
title_short | A re-evaluation of the nuclear structure function ratios for D, He, Li C and Ca |
title_sort | re-evaluation of the nuclear structure function ratios for d, he, li c and ca |
topic | Particle Physics - Experiment |
url | https://dx.doi.org/10.1016/0550-3213(94)00023-9 http://cds.cern.ch/record/278439 |
work_keys_str_mv | AT amaudruzp areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT arneodom areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT arvidsona areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT badelekb areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT ballintijnm areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT baumg areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT beaufaysj areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT birdig areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT bjorkholmp areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT botjem areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT brogginic areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT brucknerw areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT brulla areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT burgerwj areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT ciborowskij areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT vandantzigr areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT dobbelingh areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT domingoj areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT drinkardj areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT dyringa areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT engelienh areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT ferreromi areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT fluril areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT gaulu areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT grafstromp areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT graniert areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT vonharrachd areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT vanderheijdenm areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT heuschc areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT ingramq areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT jansonprytzk areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT dejongm areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT kabubem areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT kaiserr areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT keteltj areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT kleinf areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT korzenb areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT kruneru areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT kullanders areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT landgrafu areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT lettenstromf areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT lindqvistt areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT mallotgk areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT mariottic areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT vanmiddelkoopg areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT milsztajna areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT mizunoy areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT mosta areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT mucklicha areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT nassalskij areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT nowotnyd areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT paveln areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT oberskij areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT paica areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT peronic areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT peschelh areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT povhb areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT riegerr areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT rithk areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT rohrichk areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT rondioe areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT ropelewskil areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT sandacza areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT sandersd areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT scholzc areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT schumacherr areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT seitzr areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT sennhauseru areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT severf areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT shibatata areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT sieblerm areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT simona areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT staianoa areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT szleperm areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT taylorg areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT treichelm areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT tzamouranisy areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT virchauxm areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT vuilleumierjl areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT walchert areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT windmoldersr areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT witzmanna areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT zetschef areevaluationofthenuclearstructurefunctionratiosfordhelicandca AT amaudruzp reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT arneodom reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT arvidsona reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT badelekb reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT ballintijnm reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT baumg reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT beaufaysj reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT birdig reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT bjorkholmp reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT botjem reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT brogginic reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT brucknerw reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT brulla reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT burgerwj reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT ciborowskij reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT vandantzigr reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT dobbelingh reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT domingoj reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT drinkardj reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT dyringa reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT engelienh reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT ferreromi reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT fluril reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT gaulu reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT grafstromp reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT graniert reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT vonharrachd reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT vanderheijdenm reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT heuschc reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT ingramq reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT jansonprytzk reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT dejongm reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT kabubem reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT kaiserr reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT keteltj reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT kleinf reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT korzenb reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT kruneru reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT kullanders reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT landgrafu reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT lettenstromf reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT lindqvistt reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT mallotgk reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT mariottic reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT vanmiddelkoopg reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT milsztajna reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT mizunoy reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT mosta reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT mucklicha reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT nassalskij reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT nowotnyd reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT paveln reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT oberskij reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT paica reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT peronic reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT peschelh reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT povhb reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT riegerr reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT rithk reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT rohrichk reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT rondioe reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT ropelewskil reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT sandacza reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT sandersd reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT scholzc reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT schumacherr reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT seitzr reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT sennhauseru reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT severf reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT shibatata reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT sieblerm reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT simona reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT staianoa reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT szleperm reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT taylorg reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT treichelm reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT tzamouranisy reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT virchauxm reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT vuilleumierjl reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT walchert reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT windmoldersr reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT witzmanna reevaluationofthenuclearstructurefunctionratiosfordhelicandca AT zetschef reevaluationofthenuclearstructurefunctionratiosfordhelicandca |