NSR Query Results
Output year order : Descending NSR database version of May 3, 2024. Search: Author = J.Muller Found 26 matches. 2024AP01 Eur.Phys.J. C 84, 138 (2024) E.Aprile, K.Abe, S.Ahmed Maouloud, L.Althueser, B.Andrieu, E.Angelino, J.R.Angevaare, V.C.Antochi, D.Anton Martin, F.Arneodo, L.Baudis, A.L.Baxter, M.Bazyk, L.Bellagamba, R.Biondi, A.Bismark, E.J.Brookes, A.Brown, S.Bruenner, G.Bruno, R.Budnik, T.K.Bui, C.Cai, J.M.R.Cardoso, D.Cichon, A.P.Cimental Chavez, A.P.Colijn, J.Conrad, J.J.Cuenca-Garcia, J.P.Cussonneau, V.D'Andrea, M.P.Decowski, P.Di Gangi, S.Diglio, K.Eitel, A.Elykov, S.Farrell, A.D.Ferella, C.Ferrari, H.Fischer, M.Flierman, W.Fulgione, C.Fuselli, P.Gaemers, R.Gaior, A.Gallo Rosso, M.Galloway, F.Gao, R.Glade-Beucke, L.Grandi, J.Grigat, H.Guan, M.Guida, R.Hammann, A.Higuera, C.Hils, L.Hoetzsch, N.F.Hood, J.Howlett, M.Iacovacci, Y.Itow, J.Jakob, F.Joerg, A.Joy, M.Kara, P.Kavrigin, S.Kazama, M.Kobayashi, G.Koltman, A.Kopec, F.Kuger, H.Landsman, R.F.Lang, L.Levinson, I.Li, S.Li, S.Liang, S.Lindemann, M.Lindner, K.Liu, J.Loizeau, F.Lombardi, J.Long, J.A.M.Lopes, Y.Ma, C.Macolino, J.Mahlstedt, A.Mancuso, L.Manenti, F.Marignetti, T.Marrodan Undagoitia, K.Martens, J.Masbou, D.Masson, E.Masson, S.Mastroianni, M.Messina, K.Miuchi, A.Molinario, S.Moriyama, K.Mora, Y.Mosbacher, M.Murra, J.Muller, K.Ni, U.Oberlack, B.Paetsch, J.Palacio, Q.Pellegrini, R.Peres, C.Peters, J.Pienaar, M.Pierre, G.Plante, T.R.Pollmann, J.Qi, J.Qin, D.Ramirez Garcia, N.Sarcevic, J.Shi, R.Singh, L.Sanchez, J.M.F.dos Santos, I.Sarnoff, G.Sartorelli, J.Schreiner, D.Schulte, P.Schulte, H.Schulze Eissing, M.Schumann, L.Scotto Lavina, M.Selvi, F.Semeria, P.Shagin, S.Shi, E.Shockley, M.Silva, H.Simgen, A.Takeda, P.-L.Tan, A.Terliuk, D.Thers, F.Toschi, G.Trinchero, C.Tunnell, F.Tonnies, K.Valerius, G.Volta, C.Weinheimer, M.Weiss, D.Wenz, C.Wittweg, T.Wolf, V.H.S.Wu, Y.Xing, D.Xu, Z.Xu, M.Yamashita, L.Yang, J.Ye, L.Yuan, G.Zavattini, M.Zhong, T.Zhu, XENON collaboration Design and performance of the field cage for the XENONnT experiment
doi: 10.1140/epjc/s10052-023-12296-y
2023AP04 Phys.Rev. D 108, 072015 (2023) E.Aprile, K.Abe, S.Ahmed Maouloud, L.Althueser, B.Andrieu, E.Angelino, J.R.Angevaare, V.C.Antochi, D.Anton Martin, F.Arneodo, L.Baudis, A.L.Baxter, M.Bazyk, L.Bellagamba, R.Biondi, A.Bismark, E.J.Brookes, A.Brown, S.Bruenner, G.Bruno, R.Budnik, T.K.Bui, C.Cai, J.M.R.Cardoso, A.P.Cimental Chavez, A.P.Colijn, J.Conrad, J.J.Cuenca-Garcia, V.D'Andrea, M.P.Decowski, P.Di Gangi, S.Diglio, K.Eitel, A.Elykov, S.Farrell, A.D.Ferella, C.Ferrari, H.Fischer, M.Flierman, W.Fulgione, C.Fuselli, P.Gaemers, R.Gaior, A.Gallo Rosso, M.Galloway, F.Gao, R.Glade-Beucke, L.Grandi, J.Grigat, H.Guan, M.Guida, R.Hammann, A.Higuera, C.Hils, L.Hoetzsch, N.F.Hood, J.Howlett, M.Iacovacci, Y.Itow, J.Jakob, F.Joerg, A.Joy, M.Kara, P.Kavrigin, S.Kazama, M.Kobayashi, G.Koltman, A.Kopec, F.Kuger, H.Landsman, R.F.Lang, D.G.Layos Carlos, L.Levinson, I.Li, S.Li, S.Liang, S.Lindemann, M.Lindner, K.Liu, J.Loizeau, F.Lombardi, J.Long, J.A.M.Lopes, Y.Ma, C.Macolino, J.Mahlstedt, A.Mancuso, L.Manenti, F.Marignetti, T.Marrodan Undagoitia, K.Martens, J.Masbou, D.Masson, E.Masson, S.Mastroianni, M.Messina, K.Miuchi, A.Molinario, S.Moriyama, K.Moraa, Y.Mosbacher, M.Murra, J.Muller, K.Ni, U.Oberlack, B.Paetsch, J.Palacio, Q.Pellegrini, R.Peres, C.Peters, J.Pienaar, M.Pierre, G.Plante, T.R.Pollmann, J.Qi, J.Qin, D.Ramirez Garcia, J.Shi, R.Singh, L.Sanchez, J.M.F.dos Santos, I.Sarnoff, G.Sartorelli, J.Schreiner, D.Schulte, P.Schulte, H.Schulze Eissing, M.Schumann, L.Scotto Lavina, M.Selvi, F.Semeria, P.Shagin, S.Shi, E.Shockley, M.Silva, H.Simgen, A.Takeda, P.-L.Tan, A.Terliuk, D.Thers, F.Toschi, G.Trinchero, C.Tunnell, F.Tonnies, K.Valerius, G.Volta, C.Weinheimer, M.Weiss, D.Wenz, C.Wittweg, T.Wolf, V.H.S.Wu, Y.Xing, D.Xu, Z.Xu, M.Yamashita, L.Yang, J.Ye, L.Yuan, G.Zavattini, M.Zhong, T.Zhu Search for events in XENON1T associated with gravitational waves
doi: 10.1103/PhysRevD.108.072015
2023KE04 Phys.Rev.Lett. 130, 152502 (2023) S.Kegel, P.Achenbach, S.Bacca, N.Barnea, J.Bericic, D.Bosnar, L.Correa, M.O.Distler, A.Esser, H.Fonvieille, I.Friscic, M.Heilig, P.Herrmann, M.Hoek, P.Klag, T.Kolar, W.Leidemann, H.Merkel, M.Mihovilovic, J.Muller, U.Muller, G.Orlandini, J.Pochodzalla, B.S.Schlimme, M.Schoth, F.Schulz, C.Sfienti, S.Sirca, R.Spreckels, Y.Stottinger, M.Thiel, A.Tyukin, T.Walcher, A.Weber Measurement of the α-Particle Monopole Transition Form Factor Challenges Theory: A Low-Energy Puzzle for Nuclear Forces? NUCLEAR REACTIONS 4He(e-, e-'), E=450, 690, 795 MeV; measured reaction products; deduced missing mass spectrum, monopole transition form factor, resonance parameters, modern nuclear forces, including those derived within chiral effective field theory fail to reproduce the excitation of the α particle. The Mainz Microtron MAMI.
doi: 10.1103/PhysRevLett.130.152502
2022AP04 Phys.Rev.Lett. 129, 161805 (2022) E.Aprile, K.Abe, F.Agostini, S.Ahmed Maouloud, L.Althueser, B.Andrieu, E.Angelino, J.R.Angevaare, V.C.Antochi, D.Anton Martin, F.Arneodo, L.Baudis, A.L.Baxter, L.Bellagamba, R.Biondi, A.Bismark, A.Brown, S.Bruenner, G.Bruno, R.Budnik, T.K.Bui, C.Cai, C.Capelli, J.M.R.Cardoso, D.Cichon, M.Clark, A.P.Colijn, J.Conrad, J.J.Cuenca-Garcia, J.P.Cussonneau, V.D'Andrea, M.P.Decowski, P.Di Gangi, S.Di Pede, A.Di Giovanni, R.Di Stefano, S.Diglio, K.Eitel, A.Elykov, S.Farrell, A.D.Ferella, C.Ferrari, H.Fischer, W.Fulgione, P.Gaemers, R.Gaior, A.Gallo Rosso, M.Galloway, F.Gao, R.Gardner, R.Glade-Beucke, L.Grandi, J.Grigat, M.Guida, R.Hammann, A.Higuera, C.Hils, L.Hoetzsch, J.Howlett, M.Iacovacci, Y.Itow, J.Jakob, F.Joerg, A.Joy, N.Kato, M.Kara, P.Kavrigin, S.Kazama, M.Kobayashi, G.Koltman, A.Kopec, F.Kuger, H.Landsman, R.F.Lang, L.Levinson, I.Li, S.Li, S.Liang, S.Lindemann, M.Lindner, K.Liu, J.Loizeau, F.Lombardi, J.Long, J.A.M.Lopes, Y.Ma, C.Macolino, J.Mahlstedt, A.Mancuso, L.Manenti, F.Marignetti, T.Marrodan Undagoitia, K.Martens, J.Masbou, D.Masson, E.Masson, S.Mastroianni, M.Messina, K.Miuchi, K.Mizukoshi, A.Molinario, S.Moriyama, K.Mora, Y.Mosbacher, M.Murra, J.Muller, K.Ni, U.Oberlack, B.Paetsch, J.Palacio, P.Paschos, R.Peres, C.Peters, J.Pienaar, M.Pierre, V.Pizzella, G.Plante, J.Qi, J.Qin, D.Ramirez Garcia, S.Reichard, A.Rocchetti, N.Rupp, L.Sanchez, J.M.F.dos Santos, I.Sarnoff, G.Sartorelli, J.Schreiner, D.Schulte, P.Schulte, H.Schulze Eissing, M.Schumann, L.Scotto Lavina, M.Selvi, F.Semeria, P.Shagin, S.Shi, E.Shockley, M.Silva, H.Simgen, J.Stephen, A.Takeda, P.-L.Tan, A.Terliuk, D.Thers, F.Toschi, G.Trinchero, C.Tunnell, F.Tonnies, K.Valerius, G.Volta, Y.Wei, C.Weinheimer, M.Weiss, D.Wenz, C.Wittweg, T.Wolf, D.Xu, Z.Xu, M.Yamashita, L.Yang, J.Ye, L.Yuan, G.Zavattini, M.Zhong, T.Zhu Search for New Physics in Electronic Recoil Data from XENONnT RADIOACTIVITY 124Xe(2EC); measured decay products, X-rays; deduced T1/2. Comparison with available data. The XENONnT experiment, located at the INFN Laboratori Nazionali del Gran Sasso (LNGS) in Italy, was designed as a fast upgrade of XENON1T and inherits many of its systems such as cooling, gas storage, purification, and Kr removal.
doi: 10.1103/PhysRevLett.129.161805
2021ME22 Eur.Phys.J. A 57, 325 (2021) V.Metag, M.Nanova, J.Hartmann, P.Mahlberg, F.Afzal, C.Bartels, D.Bayadilov, R.Beck, M.Becker, E.Blanke, K.-T.Brinkmann, S.Ciupka, V.Crede, M.Dieterle, H.Dutz, D.Elsner, F.Frommberger, A.Gridnev, M.Gottschall, M.Gruner, Ch.Hammann, J.Hannappel, W.Hillert, J.Hoff, Ph.Hoffmeister, Ch.Honisch, T.Jude, H.Kalinowsky, F.Kalischewski, I.Keshelashvili, B.Ketzer, P.Klassen, F.Klein, K.Koop, P.Kroenert, B.Krusche, M.Lang, I.Lopatin, F.Messi, W.Meyer, B.Mitlasoczky, J.Muller, J.Mullers, V.Nikonov, V.Novinsky, R.Novotny, D.Piontek, G.Reicherz, L.Richter, T.Rostomyan, S.Runkel, B.Salisbury, A.Sarantsev, D.Schaab, Ch.Schmidt, H.Schmieden, J.Schultes, T.Seifen, V.Sokhoyan, C.Sowa, K.Spieker, N.Stausberg, A.Thiel, U.Thoma, T.Triffterer, M.Urban, G.Urff, H.van Pee, M.Wagner, D.Walther, Ch.Wendel, D.Werthmuller, U.Wiedner, A.Wilson, A.Winnebeck, L.Witthauer, Y.Wunderlich Observation of a structure in the Mpη invariant mass distribution near 1700 MeV/c2 in the γ p -> p π0 η reaction - The CBELSA/TAPS Collaboration
doi: 10.1140/epja/s10050-021-00634-1
2020ES03 Phys.Lett. B 808, 135664 (2020) A.Esser, M.Thiel, P.Achenbach, K.Aulenbacher, S.Aulenbacher, S.Baunack, D.Bosnar, S.Caiazza, M.Christmann, M.Dehn, M.O.Distler, L.Doria, P.Eckert, M.Gorchtein, P.Gulker, P.Herrmann, M.Hoek, S.Kegel, P.Klag, H.-J.Kreidel, M.Littich, S.Lunkenheimer, F.E.Maas, M.Makek, H.Merkel, M.Mihovilovic, J.Muller, U.Muller, J.Pochodzalla, B.S.Schlimme, R.Spreckels, V.Tioukine, C.Sfienti Beam-normal single spin asymmetry in elastic electron scattering off 28Si and 90Zr NUCLEAR REACTIONS 28Si, 90Zr(E, E), E=0.570 GeV; measured reaction products, Eβ, Iβ; deduced transverse asymmetries.
doi: 10.1016/j.physletb.2020.135664
2019TI04 Phys.Rev. C 99, 034321 (2019) A.Tichai, J.Muller, K.Vobig, R.Roth Natural orbitals for ab initio no-core shell model calculations NUCLEAR STRUCTURE 4He, 12C, 14,15,16,17,18,19,20,21,22,23,24,25,26O; calculated squared radial wave functions of different single particle orbits in 16O, ground state energies and point-proton radii of 4He and 16O, ground state energies of 14O to 26O nuclei, and levels, quadrupole moment, B(E2), and B(M1) of 12C using ab initio no-core shell model (NCSM) calculations with natural-orbital, Hartree-Fock, and harmonic oscillator bases.
doi: 10.1103/PhysRevC.99.034321
2018ES03 Phys.Rev.Lett. 121, 022503 (2018) A.Esser, M.Thiel, P.Achenbach, K.Aulenbacher, S.Baunack, J.Berscic, D.Bosnar, L.Correa, M.Dehn, M.O.Distler, H.Fonvieille, I.Fricic, M.Gorchtein, S.Heidrich, P.Herrmann, M.Hoek, S.Kegel, Y.Kohl, T.Kolar, H.-J.Kreidel, F.E.Maas, H.Merkel, M.Mihovilovic, J.Muller, U.Muller, F.Nillius, C.Palatchi, K.D.Paschke, J.Pochodzalla, B.S.Schlimme, M.Schoth, F.Schulz, S.Sirca, B.Spruck, S.Stajner, V.Tioukine, A.Tyukin, A.Weber, C.Sfienti First Measurement of the Q2 Dependence of the Beam-Normal Single Spin Asymmetry for Elastic Scattering off Carbon NUCLEAR REACTIONS 12C(polarized E, E), E=570 MeV; measured reaction products, Eβ, Iβ; deduced Q2 dependence of the beam-normal single spin asymmetry.
doi: 10.1103/PhysRevLett.121.022503
2009BO21 Int.J.Mod.Phys. E18, 873 (2009) C.Bockstiegel, S.Steinhauser, H.-G.Clerc, A.Grewe, A.Heinz, M.De Jong, J.Muller, B.Voss, A.R.Junghans, A.Kelic, K.-H.Schmidt Global view on fission channels
doi: 10.1142/S0218301309012987
2008BO08 Nucl.Phys. A802, 12 (2008) C.Bockstiegel, S.Steinhauser, K.-H.Schmidt, H.-G.Clerc, A.Grewe, A.Heinz, M.de Jong, A.R.Junghans, J.Muller, B.Voss Nuclear-fission studies with relativistic secondary beams: Analysis of fission channels NUCLEAR REACTIONS Pb(232U, F), (233U, F), (234U, F), (228Pa, F), (229Pa, F), (230Pa, F), (231Pa, F), (232Pa, F), (222Th, F), (223Th, F), (224Th, F), (225Th, F), (226Th, F), (228Th, F), (223Ac, F), E*≈ 11 MeV; analyzed fission fragment yields and kinetic energies; deduced fission channel parameters.
doi: 10.1016/j.nuclphysa.2008.01.012
2003HE01 Nucl.Phys. A713, 3 (2003) A.Heinz, K.-H.Schmidt, A.R.Junghans, P.Armbruster, J.Benlliure, C.Bockstiegel, H.-G.Clerc, A.Grewe, M.De Jong, J.Muller, M.Pfutzner, S.Steinhauser, B.Voss Electromagnetic-induced fission of 238U projectile fragments, a test case for the production of spherical super-heavy nuclei NUCLEAR REACTIONS Pb(205At, X), (206At, X), (205Rn, X), (206Rn, X), (207Rn, X), (208Rn, X), (209Rn, X), (208Fr, X), (209Fr, X), (210Fr, X), (211Fr, X), (212Fr, X), (217Fr, X), (218Fr, X), (210Ra, X), (211Ra, X), (212Ra, X), (213Ra, X), (214Ra, X), (215Ra, X), (216Ra, X), (217Ra, X), (218Ra, X), (219Ra, X), (220Ra, X), (221Ra, X), (222Ra, X), (223Ra, X), (215Ac, X), (216Ac, X), (217Ac, X), (218Ac, X), (219Ac, X), (220Ac, X), (221Ac, X), (222Ac, X), (223Ac, X), (224Ac, X), (225Ac, X), (226Ac, X), (221Th, X), (222Th, X), (223Th, X), (224Th, X), (225Th, X), (226Th, X), (227Th, X), (228Th, X), (229Th, X), (226Pa, X), (227Pa, X), (228Pa, X), (229Pa, X), (230Pa, X), (231Pa, X), (232Pa, X), (235Pa, X), (231U, X), (232U, X), (233U, X), (234U, X), (235U, X), (236U, X), (237U, X), (238U, X), E=300, 420 MeV/nucleon; measured fission σ, fragment charge distributions; deduced reaction mechanism features. Secondary beams from 1 GeV/nucleon 238U fragmentation.
doi: 10.1016/S0375-9474(02)01296-4
2002SC43 Eur.Phys.J. A 15, 213 (2002) K.H.Schmidt, P.Armbruster, J.Benlliure, C.Bockstiegel, H.-G.Clerc, T.Enqvist, A.Grewe, A.Heinz, A.Junghans, J.Muller, F.Rejmund, S.Steinhauser Fission studies with relativistic beams
doi: 10.1140/epja/i2001-10257-1
2002SC54 J.Nucl.Radiochem.Sci. 3, No 1, 51 (2002) K.-H.Schmidt, P.Armbruster, J.Benlliure, C.Bockstiegel, A.Botvina, H.-G.Clerc, T.Enqvist, A.Grewe, A.Heinz, A.R.Junghans, B.Jurado, J.Muller, M.V.Ricciardi, F.Rejmund, S.Steinhauser, B.Voss Experiments on Fission Dynamics with Relativistic Heavy-ion Beams
2001SC18 Nucl.Phys. A685, 60c (2001) K.-H.Schmidt, J.Benlliure, C.Bockstiegel, H.-G.Clerc, A.Grewe, A.Heinz, A.V.Ignatyuk, A.R.Junghans, M.de Jong, J.Muller, M.Pfutzner, F.Rejmund, S.Steinhauser, B.Voss New Results on Structure Effects in Nuclear Fission NUCLEAR STRUCTURE 220Ac, 228Pa, 226Th, 233U; analyzed fragment charge distributions, odd-even effect following electromagnetic fission.
doi: 10.1016/S0375-9474(01)00529-2
2000SC02 Nucl.Phys. A665, 221 (2000) K.-H.Schmidt, S.Steinhauser, C.Bockstiegel, A.Grewe, A.Heinz, A.R.Junghans, J.Benlliure, H.-G.Clerc, M.de Jong, J.Muller, M.Pfutzner, B.Voss Relativistic Radioactive Beams: A new access to nuclear-fission studies NUCLEAR REACTIONS Pb(205At, X), (206At, X), (204Rn, X), (205Rn, X), (206Rn, X), (207Rn, X), (208Rn, X), (209Rn, X), (206Fr, X), (207Fr, X), (208Fr, X), (209Fr, X), (210Fr, X), (211Fr, X), (212Fr, X), (217Fr, X), (218Fr, X), (209Ra, X), (210Ra, X), (211Ra, X), (212Ra, X), (213Ra, X), (214Ra, X), (215Ra, X), (216Ra, X)(217Ra, X), (218Ra, X), (219Ra, X), (212Ac, X), (213Ac, X), (214Ac, X), (215Ac, X), (216Ac, X), (217Ac, X), (218Ac, X), (219Ac, X), (220Ac, X), (221Ac, X), (222Ac, X), (223Ac, X), (224Ac, X), (225Ac, X), (226Ac, X), (217Th, X), (218Th, X), (219Th, X), (220Th, X), (221Th, X), (222Th, X), (223Th, X), (224Th, X), (225Th, X), (226Th, X), (227Th, X), (228Th, X), (229Th, X), (224Pa, X), (225Pa, X), (226Pa, X), (227Pa, X), (228Pa, X)(229Pa, X), (230Pa, X), (231Pa, X), (232Pa, X), (230U, X), (231U, X), (232U, X), (233U, X), (234U, X), E=high; measured fission fragments mass, charge and kinetic energy distributions following projectile electromagnetic excitation; deduced symmetric and asymmetric fission components. Comprehensive comparison with neutron-induced fission. Radioactive beams from 1 GeV/nucleon 238U fragmentation.
doi: 10.1016/S0375-9474(99)00384-X
1999BE71 Pramana 53, 637 (1999) J.Benlliure, S.Steinhauser, C.Bockstiegel, A.Grewe, H.-G.Clerc, A.Heinz, M.De Jong, A.R.Junghans, J.Muller, K.-H.Schmidt, M.Pfutzner Fission Experiments with Secondary Beams
doi: 10.1007/s12043-999-0043-6
1998SC08 Nucl.Phys. A630, 208c (1998) K.-H.Schmidt, A.R.Junghans, J.Benlliure, C.Bockstiegel, H.-G.Clerc, A.Grewe, A.Heinz, A.V.Ignatyuk, M.de Jong, G.A.Kudyaev, J.Muller, M.Pfutzner, S.Steinhauser Influence of Shell Effects on Fission Probabilities and on Fission-Fragment Properties of 238U Projectile Fragments NUCLEAR REACTIONS 221,222,223,224,225,226Ac, 222,223,224,225,226,227,228,229Th, 224,225,226,227,228,229,230,231,232Pa, 230,231,232,233,234U(γ, F), E not given; measured fission fragments charge distribution, kinetic energies; deduced shell effects. Fission-in-flight of secondary beam from 238U fragmentation.
doi: 10.1016/S0375-9474(97)00758-6
1998ST10 Nucl.Phys. A634, 89 (1998) S.Steinhauser, J.Benlliure, C.Bockstiegel, H.-G.Clerc, A.Heinz, A.Grewe, M.de Jong, A.R.Junghans, J.Muller, M.Pfutzner, K.-H.Schmidt Odd-Even Effects Observed in the Fission of Nuclei with Unpaired Protons NUCLEAR REACTIONS 231,232,233,234U, 224,225,226,227,228,229,230,231,232Pa, 220,222,223,224,225,226,227,228,229Th, 214,215,216,217,218,219,220,221,222,223Ac(γ, F), E not given; measured fission fragments charge distributions; deduced odd-even effects, single particle level density role. Electromagnetically induced fission of secondary radioactive beams.
doi: 10.1016/S0375-9474(98)00148-1
1997BO17 Phys.Lett. 398, 259 (1997) C.Bockstiegel, S.Steinhauser, J.Benlliure, H.-G.Clerc, A.Grewe, A.Heinz, M.de Jong, A.R.Junghans, J.Muller, K.-H.Schmidt Total Kinetic Energies and Nuclear-Charge Yields in the Fission of Relativistic 233U Secondary Projectiles NUCLEAR REACTIONS 233U(γ, F), E=420 MeV/nucleon; measured fission in flight, fragment total kinetic energies, charge yields, Secondary 233U beam, electromagnetic excitations in Pb target.
doi: 10.1016/S0370-2693(97)00214-1
1997DE08 Nucl.Phys. A616, 363c (1997) M.de Jong, C.Bockstiegel, H.-G.Clerc, A.Grewe, A.Junghans, J.Muller, S.Steinhauser, J.Benlliure, A.Heinz, K.-H.Schmidt, M.Pfutzner, A.Ignatyuk, G.Kudyaev New Results on Low-Energy Fission with High-Energy RNB NUCLEAR REACTIONS Pb(234U, F), E=400 MeV/nucleon; measured fragment yields vs charge following electromagnetic-induced projectile fission. Different secondary beams from projectile fragmentation in 9Be(238U, X) reaction.
doi: 10.1016/S0375-9474(97)00112-7
1997HE10 Acta Phys.Pol. B28, 315 (1997) A.Heinz, J.Benlliure, C.Bockstiegel, H.-G.Clerc, A.Grewe, M.De Jong, A.R.Junghans, J.Muller, M.Pfutzner, K.-H.Schmidt, S.Steinhauser Fission of Relativistic Secondary Beams NUCLEAR REACTIONS Pb(226Th, F), (234U, F), E≈600 MeV/nucleon; measured projectile electromagnetic-induced fission fragment yields. Secondary beam from 1 GeV/nucleon 238U fragmentation.
1994MU08 Phys.Rev. C50, 410 (1994) Chiral Perturbation Theory and the SU(2) Nambu-Jona-Lasino Model: A comparison
doi: 10.1103/PhysRevC.50.410
1986MU15 Nucl.Data Sheets 49, 579 (1986) Nuclear Data Sheets for A = 83 COMPILATION 83Ga, 83Ge, 83As, 83Se, 83Br, 83Kr, 83Rb, 83Sr, 83Y, 83Zr; compiled, evaluated structure data.
1985MU16 Nucl.Data Sheets 46, 487 (1985) Nuclear Data Sheets for A = 81 COMPILATION 81Ga, 81Ge, 81As, 81Se, 81Br, 81Kr, 81Rb, 81Sr, 81Y, 81Zr; compiled, evaluated structure data.
1963MU12 Thesis, Universitat Zurich (1963) Doppel- und Tripel-Korrelationsmessungen an einer Gammakaskade bei Al27(p, γ)Si28 NUCLEAR STRUCTURE 28Si; measured not abstracted; deduced nuclear properties.
1959LI51 Helv.Phys.Acta 32, 268 (1959) A.Lippold, J.W.Muller, H.H.Staub, H.Winkler Absolute Measurement of Two Fluorine Resonances
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