NSR Query Results
Output year order : Descending NSR database version of April 26, 2024. Search: Author = K.Satou Found 17 matches. 2006KI09 Phys.Lett. B 639, 429 (2006) T.Kinoshita, H.Yamazaki, H.Fukasawa, K.Hirota, T.Ishikawa, J.Kasagi, A.Kato, T.Katsuyama, K.Kino, F.Miyahara, T.Nakabayashi, K.Nawa, K.Okamura, Y.Saitoh, K.Satou, M.Sengoku, H.Shimizu, K.Suzuki, S.Suzuki, T.Terasawa, H.Kanda, K.Maeda, T.Takahashi, Y.Aruga, T.Fujinoya, A.Iijima, M.Itaya, Y.Ito, T.Iwata, H.Kato, T.Kawamura, T.Michigami, M.Moriya, T.Sasaki, Y.Tajima, S.Takita, T.Noma, M.Yamamoto, H.Y.Yoshida, Y.Yoshida, O.Konno, T.Maruyama, T.Yorita Photoproduction of η-mesons off C and Cu nuclei for photon energies below 1.1 GeV NUCLEAR REACTIONS C, Cu(γ, X), E=600-1100 MeV; measured total η production σ, σ(θ), invariant mass spectra; deduced resonance features. Comparison with other results and model calculations.
doi: 10.1016/j.physletb.2006.05.088
2006NI09 Phys.Atomic Nuclei 69, 1399 (2006) K.Nishio, H.Ikezoe, M.Asai, K.Tsukada, S.Mitsuoka, K.Tsuruta, K.Satou, C.J.Lin, T.Ohsawa Evidence of Complete Fusion in the Subbarrier 16O + 238U Reaction NUCLEAR REACTIONS 238U(16O, 4n), (16O, 5n), (16O, 6n), E(cm)=70-95 MeV; measured evaporation residue σ; deduced reaction mechanism features. Comparison with statistical model predictions. RADIOACTIVITY 248,249,250Fm(α) [from 238U(16O, xn)]; measured Eα, T1/2.
doi: 10.1134/S1063778806080187
2006SA09 Phys.Rev. C 73, 034609 (2006) K.Satou, H.Ikezoe, S.Mitsuoka, K.Nishio, C.J.Lin, S.C.Jeong Measurements of evaporation residue cross sections for the fusion reactions 86Kr + 134Ba and 86Kr + 138Ba NUCLEAR REACTIONS 138Ba(86Kr, xnypzα), E(cm) ≈ 206-241 MeV; 134Ba(86Kr, xnypzα), E(cm) ≈ 220-227 MeV; measured evaporation residue σ; deduced shell structure effects.
doi: 10.1103/PhysRevC.73.034609
2004IK03 Prog.Theor.Phys.(Kyoto), Suppl. 154, 45 (2004) H.Ikezoe, K.Satou, S.Mitsuoka, K.Nishio, K.Tsuruta, S.-C.Jeong, C.-J.Lin Effect of Closed Shell Structure on Heavy-Ion Fusion Reactions NUCLEAR REACTIONS 134,138Ba(82Se, X), (86Kr, X), 204Pb(16O, X), Ce(82Se, X), E* ≈ 5-80 MeV; measured evaporation residue σ; deduced shell effects.
doi: 10.1143/PTPS.154.45
2004MI38 Prog.Theor.Phys.(Kyoto), Suppl. 154, 53 (2004) S.Mitsuoka, H.Ikezoe, K.Nishio, K.Satou, K.Tsuruta, C.-J.Lin Dependence of Heavy-Ion Fusion Reaction on Nuclear Deformation NUCLEAR REACTIONS 154Sm(60Ni, X), (64Ni, X), 182W(32S, X), 150Nd(76Ge, X), 198Pt(28Si, X), E* ≈ 10-70 MeV; measured fusion excitation functions; deduced deformation effects.
doi: 10.1143/PTPS.154.53
2004NI10 Phys.Rev.Lett. 93, 162701 (2004) K.Nishio, H.Ikezoe, Y.Nagame, M.Asai, K.Tsukada, S.Mitsuoka, K.Tsuruta, K.Satou, C.J.Lin, T.Ohsawa Evidence of Complete Fusion in the Sub-Barrier 16O + 238U Reaction NUCLEAR REACTIONS 238U(16O, 4n), (16O, 5n), (16O, 6n), E(cm) ≈ 70-105 MeV; measured evaporation residue σ; deduced complete fusion at sub-barrier energies, role of orientation and deformation. Comparison with statistical model predictions.
doi: 10.1103/PhysRevLett.93.162701
2003IK01 Yad.Fiz. 66, 1089 (2003); Phys.Atomic Nuclei 66, 1053 (2003) H.Ikezoe, K.Satou, S.Mitsuoka, K.Nishio, S.C.Jeong Effect of Nuclear Shell Structure on Fusion Reaction NUCLEAR REACTIONS 138Ba(82Se, xnyp)209Ra/210Ra/211Ra/212Ra/214Ra/215Ra/212Ac/213Ac/214Ac/215Ac/216Ac/213Th/214Th/215Th/216Th/217Th, E(cm) ≈ 200-250 MeV; 134Ba(82Se, xnyp)207Ra/208Ra/210Ac/211Ac/212Ac/213Ac/214Ac/215Ac/211Th/212Th/213Th/214Th/215Th, E(cm) ≈ 200-260 MeV; measured σ; deduced entrance channel shell effects.
doi: 10.1134/1.1586417
2003NI01 Phys.Rev. C 67, 014604 (2003) K.Nishio, H.Ikezoe, Y.Nagame, S.Mitsuoka, I.Nishinaka, L.Duan, K.Satou, S.Goto, M.Asai, H.Haba, K.Tsukada, N.Shinohara, S.Ichikawa, T.Ohsawa Fragment mass distribution of the 239Pu(d, pf) reaction via the superdeformed β-vibrational resonance NUCLEAR REACTIONS 239Pu(d, pF), E=13.5 MeV; measured Ep, (fragment)p-coin, fission fragment mass yields; deduced mass distribution for fission from superdeformed resonance. 240Pu deduced fission mechanism features.
doi: 10.1103/PhysRevC.67.014604
2003NI10 Phys.Rev. C 68, 064305 (2003) K.Nishio, H.Ikezoe, S.Mitsuoka, K.Satou, C.J.Lin Half-life of 228Pu and α decay of 228Np RADIOACTIVITY 228Pu, 228Np, 224,225U, 224Pa, 220,221Th, 220Ac, 216Fr, 212,213Rn, 212At(α) [from 198Pt(34S, xnypzα) and subsequent decay]; measured Eα, T1/2. NUCLEAR REACTIONS 198Pt(34S, 4n), (34S, 3np), (34S, 3nα), E(cm)=141, 143 MeV; measured evaporation residue production σ. Comparison with statistical model prediction.
doi: 10.1103/PhysRevC.68.064305
2002IK03 J.Nucl.Radiochem.Sci. 3, No 1, 39 (2002) H.Ikezoe, S.Mitsuoka, K.Nishio, K.Satou, I.Nishinaka Dependence of Heavy-ion Fusion Reaction on Nuclear Deformation and Nuclear Shell Structure NUCLEAR REACTIONS 154Sm(64Ni, X), 134,138Ba(82Se, xn), E(cm) ≈ 190-250 MeV; measured evaporation residue σ; deduced fusion probability, deformation and shell structure effects.
2002MI20 Phys.Rev. C65, 054608 (2002) S.Mitsuoka, H.Ikezoe, K.Nishio, K.Satou, J.Lu Effects of Neutron Number and Nuclear Deformation on Complete Fusion of 60, 64Ni + 154Sm Near the Coulomb Barrier NUCLEAR REACTIONS 154Sm(64Ni, xnypzα)216Th/215Th/214Th/213Th/212Th/211Th/215Ac/214Ac/213Ac/212Ac/211Ac/210Ac/214Ra/213Ra/212Ra/211Ra/210Ra/209Ra, E=4-5 MeV/nucleon; 154Sm(60Ni, xnypzα), E=4-5 MeV/nucleon; measured evaporation residue σ; deduced fusion probability, reaction mechanism features. Recoil mass separator.
doi: 10.1103/PhysRevC.65.054608
2002MO20 Eur.Phys.J. A 14, 13 (2002) C.-B.Moon, T.Komatsubara, Y.Sasaki, T.Jumatsu, K.Yamada, K.Satou, K.Furuno Signature Inversion in the Yrare Band of 119Xe NUCLEAR REACTIONS 107Ag(16O, 3np), E=85 MeV; measured Eγ, Iγ, γγ-coin. 119Xe deduced high-spin levels, J, π, signature inversion. Cranked mean-field calculations.
doi: 10.1007/s10050-002-8783-4
2002MO27 J.Korean Phys.Soc. 41, 188 (2002) C.B.Moon, S.J.Chae, J.H.Ha, T.Komatsubara, Y.Sasaki, T.Jumatsu, K.Yamada, K.Satou, K.Furuno Signature Anomaly in the Yrare Band of 119Xe NUCLEAR REACTIONS 107Ag(16O, 3np), E=85 MeV; measured Eγ, Iγ, γγ-coin. 119Xe deduced high-spin levels, J, π, signature inversion. Cranked mean-field calculations.
2002NI11 J.Nucl.Radiochem.Sci. 3, No 1, 89 (2002) K.Nishio, H.Ikezoe, S.Mitsuoka, K.Satou, S.C.Jeong Effects of Nuclear Deformation on the Fusion Probability in the Reactions of 76Ge + 150Nd and 82Se + natCe NUCLEAR REACTIONS 150Nd(76Ge, X), E(cm) ≈ 180-260 MeV; Ce(82Se, X), E(cm) ≈ 200-260 MeV; 198Pt(28Si, X), E(cm) ≈ 110-160 MeV; measured evaporation residue σ; deduced fusion probabilities, deformation effects.
2002SA22 Phys.Rev. C65, 054602 (2002) K.Satou, H.Ikezoe, S.Mitsuoka, K.Nishio, S.C.Jeong Effect of Shell Structure in the Fusion Reactions 82Se + 134Ba and 82Se + 138Ba NUCLEAR REACTIONS 134Ba(82Se, xnypzα)215Th/214Th/213Th/212Th/211Th/215Ac/214Ac/213Ac/212Ac/211Ac/210Ac/208Ra/207Ra, E(cm)=200-249 MeV; 138Ba(82Se, xnypzα)215Ra/214Ra/212Ra/211Ra/210Ra/209Ra/217Th/216Th/215Th/214Th/213Th/216Ac/215Ac/214Ac/213Ac/212Ac, E(cm)=193-251 MeV; measured evaporation residue σ; deduced fusion probability, extra-extra push energy, shell structure effects. Coupled-channels and statistical model calculations, other reactions compared.
doi: 10.1103/PhysRevC.65.054602
2001MO39 Nucl.Phys. A696, 45 (2001) C.-B.Moon, S.J.Chae, J.H.Ha, T.Komatsubara, Y.Sasaki, T.Jumatsu, K.Yamada, K.Satou, K.Furuno Level Structure of 120Cs NUCLEAR REACTIONS 107Ag(16O, 3n), E=85 MeV; measured Eγ, Iγ, DCO ratios, γγ-coin. 120Cs deduced high-spin levels, J, π, ocnfigurations, Routhians. γ-dependent Routhian surface calculations, cranked shell model calculations. Array of Compton-suppressed HPGe and LEPS detectors.
doi: 10.1016/S0375-9474(01)01118-6
2001NI06 Phys.Rev. C63, 044610 (2001) K.Nishio, H.Ikezoe, S.Mitsuoka, K.Satou, S.C.Jeong Effects of Nuclear Deformation on Fusion Probability in the Reactions of 82Se + natCe and 76Ge + 150Nd Near the Coulomb Barrier NUCLEAR REACTIONS Ce(82Se, X)214Th/219U/220U/221U/218Pa/219Pa/220Pa, E(cm)=215-253 MeV; measured evaporation residue σ; deduced fusion probability. Ce(82Se, X), 198Pt(28Si, X), 150Nd(76Ge, X), E ≈ threshold; analyzed fusion probability; deduced role of deformation.
doi: 10.1103/PhysRevC.63.044610
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