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Nuclear Effect in Higher-Dimensional Factorial Moment Analysis of the $^{16}O$-, $^{32}S$- and $^{197}Au$-$Em$ Interaction Data at 200, 60 and 11 AGeV/c

The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ^{16}O-, ^{32}S- and ^{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis...

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Detalles Bibliográficos
Autores principales: Adamovich, M.I., Aggarwal, M.M., Alexandrov, Y.A., Amirikas, R., Andreeva, N.P., Avetian, F.A., Badyal, S.K., Bakich, A.M., Basova, E.S., Bhalla, K.B., Bhasin, A., Bhatia, V.S., Bogdanov, V.G., Bradnova, V., Bubnov, V.I., Cai, X., Chasnikov, I.Y., Chen, G.M., Chernova, L.P., Chernyavsky, M.M., Deng, Y., Dhamija, S., El Chenawi, K., Felea, D., Feng, S.Q., Gaitinov, A.S., Ganssauge, E.R., Garpman, S., Gerasimov, S.G., Gheata, A., Gheata, M., Grote, J., Gulamov, K.G., Gupta, S.K., Gupta, V.K., Haiduc, M., Hasegan, D., Hu, Z.R., Jakobsson, B., Just, L., Kanygina, E.K., Karabova, M., Kharlamov, S.P., Kim, Y.C., Kovalenko, A.D., Krasnov, S.A., Kumar, V., Larionova, V.G., Lee, C.G., Lepekhin, F.G., Levitskaya, O.V., Li, Y.X., Liang, L., Liu, L.S., Liu, Z.G., Lokanathan, S., Lord, J.J., Lu, Y., Lukicheva, N.S., Luo, S.B., Mangotra, L.K., Marutian, N.A., Mittra, I.S., Musaeva, A.K., Nasyrov, S.Z., Navotny, V.S., Nilsson, P., Nystrand, J., Orlova, G.I., Otterlund, I., Pavukova, A., Peak, L.S., Peresadko, N.G., Petrov, N.V., Plyushchev, V.A., Qian, W.Y., Qin, Y.M., Raniwala, R., Rao, N.K., Rhee, J.T., Roeper, M., Rusakova, V.V., Saidkhanov, N., Salmanova, N.A., Sarkisova, L.G., Sarkisian, V.R., Seitimbetov, A.M., Seliverstov, D.M., Sethi, R., Shakhova, C.I., Simonov, B.B., Singh, B., Skelding, D., Skorobogatova, V.I., Soderstrom, K., Stenlund, E., Svechnikova, L.N., Tawfik, A.M., Tothova, M., Tretyakova, M.I., Trofimova, T.P., Tuleeva, U.I., Vashisht, V., Vokal, S., Vrlakova, J., Wang, H.Q., Wang, S.H., Wang, X.R., Weng, Z.Q., Wilkes, R.J., Yang, C.B., Yin, Z.B., Yu, L.Z., Yu, Y.L., Xu, G.F., Zhang, D.H., Zheng, P.Y., Zhokhova, S.I., Zhou, D.C.
Lenguaje:eng
Publicado: 1997
Materias:
Acceso en línea:https://dx.doi.org/10.1007/s002880050588
http://cds.cern.ch/record/322924
_version_ 1780890785479131136
author Adamovich, M.I.
Aggarwal, M.M.
Alexandrov, Y.A.
Amirikas, R.
Andreeva, N.P.
Avetian, F.A.
Badyal, S.K.
Bakich, A.M.
Basova, E.S.
Bhalla, K.B.
Bhasin, A.
Bhatia, V.S.
Bogdanov, V.G.
Bradnova, V.
Bubnov, V.I.
Cai, X.
Chasnikov, I.Y.
Chen, G.M.
Chernova, L.P.
Chernyavsky, M.M.
Deng, Y.
Dhamija, S.
El Chenawi, K.
Felea, D.
Feng, S.Q.
Gaitinov, A.S.
Ganssauge, E.R.
Garpman, S.
Gerasimov, S.G.
Gheata, A.
Gheata, M.
Grote, J.
Gulamov, K.G.
Gupta, S.K.
Gupta, V.K.
Haiduc, M.
Hasegan, D.
Hu, Z.R.
Jakobsson, B.
Just, L.
Kanygina, E.K.
Karabova, M.
Kharlamov, S.P.
Kim, Y.C.
Kovalenko, A.D.
Krasnov, S.A.
Kumar, V.
Larionova, V.G.
Lee, C.G.
Lepekhin, F.G.
Levitskaya, O.V.
Li, Y.X.
Liang, L.
Liu, L.S.
Liu, Z.G.
Lokanathan, S.
Lord, J.J.
Lu, Y.
Lukicheva, N.S.
Luo, S.B.
Mangotra, L.K.
Marutian, N.A.
Mittra, I.S.
Musaeva, A.K.
Nasyrov, S.Z.
Navotny, V.S.
Nilsson, P.
Nystrand, J.
Orlova, G.I.
Otterlund, I.
Pavukova, A.
Peak, L.S.
Peresadko, N.G.
Petrov, N.V.
Plyushchev, V.A.
Qian, W.Y.
Qin, Y.M.
Raniwala, R.
Rao, N.K.
Rhee, J.T.
Roeper, M.
Rusakova, V.V.
Saidkhanov, N.
Salmanova, N.A.
Sarkisova, L.G.
Sarkisian, V.R.
Seitimbetov, A.M.
Seliverstov, D.M.
Sethi, R.
Shakhova, C.I.
Simonov, B.B.
Singh, B.
Skelding, D.
Skorobogatova, V.I.
Soderstrom, K.
Stenlund, E.
Svechnikova, L.N.
Tawfik, A.M.
Tothova, M.
Tretyakova, M.I.
Trofimova, T.P.
Tuleeva, U.I.
Vashisht, V.
Vokal, S.
Vrlakova, J.
Wang, H.Q.
Wang, S.H.
Wang, X.R.
Weng, Z.Q.
Wilkes, R.J.
Yang, C.B.
Yin, Z.B.
Yu, L.Z.
Yu, Y.L.
Xu, G.F.
Zhang, D.H.
Zheng, P.Y.
Zhokhova, S.I.
Zhou, D.C.
author_facet Adamovich, M.I.
Aggarwal, M.M.
Alexandrov, Y.A.
Amirikas, R.
Andreeva, N.P.
Avetian, F.A.
Badyal, S.K.
Bakich, A.M.
Basova, E.S.
Bhalla, K.B.
Bhasin, A.
Bhatia, V.S.
Bogdanov, V.G.
Bradnova, V.
Bubnov, V.I.
Cai, X.
Chasnikov, I.Y.
Chen, G.M.
Chernova, L.P.
Chernyavsky, M.M.
Deng, Y.
Dhamija, S.
El Chenawi, K.
Felea, D.
Feng, S.Q.
Gaitinov, A.S.
Ganssauge, E.R.
Garpman, S.
Gerasimov, S.G.
Gheata, A.
Gheata, M.
Grote, J.
Gulamov, K.G.
Gupta, S.K.
Gupta, V.K.
Haiduc, M.
Hasegan, D.
Hu, Z.R.
Jakobsson, B.
Just, L.
Kanygina, E.K.
Karabova, M.
Kharlamov, S.P.
Kim, Y.C.
Kovalenko, A.D.
Krasnov, S.A.
Kumar, V.
Larionova, V.G.
Lee, C.G.
Lepekhin, F.G.
Levitskaya, O.V.
Li, Y.X.
Liang, L.
Liu, L.S.
Liu, Z.G.
Lokanathan, S.
Lord, J.J.
Lu, Y.
Lukicheva, N.S.
Luo, S.B.
Mangotra, L.K.
Marutian, N.A.
Mittra, I.S.
Musaeva, A.K.
Nasyrov, S.Z.
Navotny, V.S.
Nilsson, P.
Nystrand, J.
Orlova, G.I.
Otterlund, I.
Pavukova, A.
Peak, L.S.
Peresadko, N.G.
Petrov, N.V.
Plyushchev, V.A.
Qian, W.Y.
Qin, Y.M.
Raniwala, R.
Rao, N.K.
Rhee, J.T.
Roeper, M.
Rusakova, V.V.
Saidkhanov, N.
Salmanova, N.A.
Sarkisova, L.G.
Sarkisian, V.R.
Seitimbetov, A.M.
Seliverstov, D.M.
Sethi, R.
Shakhova, C.I.
Simonov, B.B.
Singh, B.
Skelding, D.
Skorobogatova, V.I.
Soderstrom, K.
Stenlund, E.
Svechnikova, L.N.
Tawfik, A.M.
Tothova, M.
Tretyakova, M.I.
Trofimova, T.P.
Tuleeva, U.I.
Vashisht, V.
Vokal, S.
Vrlakova, J.
Wang, H.Q.
Wang, S.H.
Wang, X.R.
Weng, Z.Q.
Wilkes, R.J.
Yang, C.B.
Yin, Z.B.
Yu, L.Z.
Yu, Y.L.
Xu, G.F.
Zhang, D.H.
Zheng, P.Y.
Zhokhova, S.I.
Zhou, D.C.
author_sort Adamovich, M.I.
collection CERN
description The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ^{16}O-, ^{32}S- and ^{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.
id cern-322924
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1997
record_format invenio
spelling cern-3229242021-12-22T03:11:21Zdoi:10.1007/s002880050588http://cds.cern.ch/record/322924engAdamovich, M.I.Aggarwal, M.M.Alexandrov, Y.A.Amirikas, R.Andreeva, N.P.Avetian, F.A.Badyal, S.K.Bakich, A.M.Basova, E.S.Bhalla, K.B.Bhasin, A.Bhatia, V.S.Bogdanov, V.G.Bradnova, V.Bubnov, V.I.Cai, X.Chasnikov, I.Y.Chen, G.M.Chernova, L.P.Chernyavsky, M.M.Deng, Y.Dhamija, S.El Chenawi, K.Felea, D.Feng, S.Q.Gaitinov, A.S.Ganssauge, E.R.Garpman, S.Gerasimov, S.G.Gheata, A.Gheata, M.Grote, J.Gulamov, K.G.Gupta, S.K.Gupta, V.K.Haiduc, M.Hasegan, D.Hu, Z.R.Jakobsson, B.Just, L.Kanygina, E.K.Karabova, M.Kharlamov, S.P.Kim, Y.C.Kovalenko, A.D.Krasnov, S.A.Kumar, V.Larionova, V.G.Lee, C.G.Lepekhin, F.G.Levitskaya, O.V.Li, Y.X.Liang, L.Liu, L.S.Liu, Z.G.Lokanathan, S.Lord, J.J.Lu, Y.Lukicheva, N.S.Luo, S.B.Mangotra, L.K.Marutian, N.A.Mittra, I.S.Musaeva, A.K.Nasyrov, S.Z.Navotny, V.S.Nilsson, P.Nystrand, J.Orlova, G.I.Otterlund, I.Pavukova, A.Peak, L.S.Peresadko, N.G.Petrov, N.V.Plyushchev, V.A.Qian, W.Y.Qin, Y.M.Raniwala, R.Rao, N.K.Rhee, J.T.Roeper, M.Rusakova, V.V.Saidkhanov, N.Salmanova, N.A.Sarkisova, L.G.Sarkisian, V.R.Seitimbetov, A.M.Seliverstov, D.M.Sethi, R.Shakhova, C.I.Simonov, B.B.Singh, B.Skelding, D.Skorobogatova, V.I.Soderstrom, K.Stenlund, E.Svechnikova, L.N.Tawfik, A.M.Tothova, M.Tretyakova, M.I.Trofimova, T.P.Tuleeva, U.I.Vashisht, V.Vokal, S.Vrlakova, J.Wang, H.Q.Wang, S.H.Wang, X.R.Weng, Z.Q.Wilkes, R.J.Yang, C.B.Yin, Z.B.Yu, L.Z.Yu, Y.L.Xu, G.F.Zhang, D.H.Zheng, P.Y.Zhokhova, S.I.Zhou, D.C.Nuclear Effect in Higher-Dimensional Factorial Moment Analysis of the $^{16}O$-, $^{32}S$- and $^{197}Au$-$Em$ Interaction Data at 200, 60 and 11 AGeV/cParticle Physics - PhenomenologyThe anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ^{16}O-, ^{32}S- and ^{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ~{16}O-, ~{32}S- and ~{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ~{16}O-, ~{32}S- and ~{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ~{16}O-, ~{32}S- and ~{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ~{16}O-, ~{32}S- and ~{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ~{16}O-, ~{32}S- and ~{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ~{16}O-, ~{32}S- and ~{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ~{16}O-, ~{32}S- and ~{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ~{16}O-, ~{32}S- and ~{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.The anomalous behavior of 2-dimensional factorial moment in nucleus-nucleus collisions is studied in some detail using both mini-bias and central collision data of ^{16}O-, ^{32}S- and ^{197}Au-Em interactions from EMU01 experiment. The correct value for the effective Hurst exponent in the analysis of higher-dimensional factorial moment is found to be greater than unity, showing clearly the existence of superposition effect in nucleus-nucleus collisions.hep-ph/9703396HZPP-9701HZPP-97-001oai:cds.cern.ch:3229241997-03-24
spellingShingle Particle Physics - Phenomenology
Adamovich, M.I.
Aggarwal, M.M.
Alexandrov, Y.A.
Amirikas, R.
Andreeva, N.P.
Avetian, F.A.
Badyal, S.K.
Bakich, A.M.
Basova, E.S.
Bhalla, K.B.
Bhasin, A.
Bhatia, V.S.
Bogdanov, V.G.
Bradnova, V.
Bubnov, V.I.
Cai, X.
Chasnikov, I.Y.
Chen, G.M.
Chernova, L.P.
Chernyavsky, M.M.
Deng, Y.
Dhamija, S.
El Chenawi, K.
Felea, D.
Feng, S.Q.
Gaitinov, A.S.
Ganssauge, E.R.
Garpman, S.
Gerasimov, S.G.
Gheata, A.
Gheata, M.
Grote, J.
Gulamov, K.G.
Gupta, S.K.
Gupta, V.K.
Haiduc, M.
Hasegan, D.
Hu, Z.R.
Jakobsson, B.
Just, L.
Kanygina, E.K.
Karabova, M.
Kharlamov, S.P.
Kim, Y.C.
Kovalenko, A.D.
Krasnov, S.A.
Kumar, V.
Larionova, V.G.
Lee, C.G.
Lepekhin, F.G.
Levitskaya, O.V.
Li, Y.X.
Liang, L.
Liu, L.S.
Liu, Z.G.
Lokanathan, S.
Lord, J.J.
Lu, Y.
Lukicheva, N.S.
Luo, S.B.
Mangotra, L.K.
Marutian, N.A.
Mittra, I.S.
Musaeva, A.K.
Nasyrov, S.Z.
Navotny, V.S.
Nilsson, P.
Nystrand, J.
Orlova, G.I.
Otterlund, I.
Pavukova, A.
Peak, L.S.
Peresadko, N.G.
Petrov, N.V.
Plyushchev, V.A.
Qian, W.Y.
Qin, Y.M.
Raniwala, R.
Rao, N.K.
Rhee, J.T.
Roeper, M.
Rusakova, V.V.
Saidkhanov, N.
Salmanova, N.A.
Sarkisova, L.G.
Sarkisian, V.R.
Seitimbetov, A.M.
Seliverstov, D.M.
Sethi, R.
Shakhova, C.I.
Simonov, B.B.
Singh, B.
Skelding, D.
Skorobogatova, V.I.
Soderstrom, K.
Stenlund, E.
Svechnikova, L.N.
Tawfik, A.M.
Tothova, M.
Tretyakova, M.I.
Trofimova, T.P.
Tuleeva, U.I.
Vashisht, V.
Vokal, S.
Vrlakova, J.
Wang, H.Q.
Wang, S.H.
Wang, X.R.
Weng, Z.Q.
Wilkes, R.J.
Yang, C.B.
Yin, Z.B.
Yu, L.Z.
Yu, Y.L.
Xu, G.F.
Zhang, D.H.
Zheng, P.Y.
Zhokhova, S.I.
Zhou, D.C.
Nuclear Effect in Higher-Dimensional Factorial Moment Analysis of the $^{16}O$-, $^{32}S$- and $^{197}Au$-$Em$ Interaction Data at 200, 60 and 11 AGeV/c
title Nuclear Effect in Higher-Dimensional Factorial Moment Analysis of the $^{16}O$-, $^{32}S$- and $^{197}Au$-$Em$ Interaction Data at 200, 60 and 11 AGeV/c
title_full Nuclear Effect in Higher-Dimensional Factorial Moment Analysis of the $^{16}O$-, $^{32}S$- and $^{197}Au$-$Em$ Interaction Data at 200, 60 and 11 AGeV/c
title_fullStr Nuclear Effect in Higher-Dimensional Factorial Moment Analysis of the $^{16}O$-, $^{32}S$- and $^{197}Au$-$Em$ Interaction Data at 200, 60 and 11 AGeV/c
title_full_unstemmed Nuclear Effect in Higher-Dimensional Factorial Moment Analysis of the $^{16}O$-, $^{32}S$- and $^{197}Au$-$Em$ Interaction Data at 200, 60 and 11 AGeV/c
title_short Nuclear Effect in Higher-Dimensional Factorial Moment Analysis of the $^{16}O$-, $^{32}S$- and $^{197}Au$-$Em$ Interaction Data at 200, 60 and 11 AGeV/c
title_sort nuclear effect in higher-dimensional factorial moment analysis of the $^{16}o$-, $^{32}s$- and $^{197}au$-$em$ interaction data at 200, 60 and 11 agev/c
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/s002880050588
http://cds.cern.ch/record/322924
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AT guptavk nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT haiducm nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT hasegand nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT huzr nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT jakobssonb nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT justl nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT kanyginaek nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT karabovam nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT kharlamovsp nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT kimyc nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT kovalenkoad nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT krasnovsa nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT kumarv nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT larionovavg nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT leecg nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT lepekhinfg nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT levitskayaov nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT liyx nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT liangl nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT liuls nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT liuzg nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT lokanathans nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT lordjj nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT luy nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT lukichevans nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT luosb nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT mangotralk nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT marutianna nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT mittrais nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT musaevaak nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT nasyrovsz nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT navotnyvs nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT nilssonp nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT nystrandj nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT orlovagi nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT otterlundi nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT pavukovaa nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT peakls nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT peresadkong nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT petrovnv nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT plyushchevva nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT qianwy nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT qinym nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT raniwalar nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT raonk nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT rheejt nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT roeperm nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT rusakovavv nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT saidkhanovn nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT salmanovana nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT sarkisovalg nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT sarkisianvr nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT seitimbetovam nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT seliverstovdm nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT sethir nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT shakhovaci nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT simonovbb nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT singhb nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT skeldingd nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT skorobogatovavi nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT soderstromk nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT stenlunde nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT svechnikovaln nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT tawfikam nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT tothovam nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT tretyakovami nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT trofimovatp nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT tuleevaui nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT vashishtv nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT vokals nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT vrlakovaj nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT wanghq nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT wangsh nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT wangxr nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT wengzq nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT wilkesrj nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT yangcb nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT yinzb nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT yulz nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT yuyl nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT xugf nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT zhangdh nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT zhengpy nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT zhokhovasi nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc
AT zhoudc nucleareffectinhigherdimensionalfactorialmomentanalysisofthe16o32sand197aueminteractiondataat20060and11agevc