NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = K.Arita Found 27 matches. 2023AR06 Phys.Rev. C 108, 014303 (2023) Octupole deformation of nuclei near the spherical closed-shell configurations
doi: 10.1103/PhysRevC.108.014303
2023AR13 Phys.Rev. C 108, 044311 (2023) Semiclassical origin of nuclear ground-state octupole deformations
doi: 10.1103/PhysRevC.108.044311
2020AR01 Phys.Scr. 95, 24003 (2020) K.-i.Arita, T.Ichikawa, K.Matsuyanagi Semiclassical origin of asymmetric nuclear fission: nascent-fragment shell effect in periodic-orbit theory NUCLEAR REACTIONS 236U(n, F), E not given; analyzed available data; deduced shell structures in fission processes with the 3QS cavity model.
doi: 10.1088/1402-4896/ab42a8
2018AR08 Phys.Rev. C 98, 064310 (2018) Semiclassical trace formula for truncated spherical well potentials: Toward the analyses of shell structures in nuclear fission processes
doi: 10.1103/PhysRevC.98.064310
2018AR09 Phys.Rev. C 98, 064311 (2018) K.Arita, T.Ichikawa, K.Matsuyanagi Nascent fragment shell effects on the nuclear fission processes in semiclassical periodic orbit theory
doi: 10.1103/PhysRevC.98.064311
2017AR07 Phys.Scr. 92, 074005 (2017) Periodic orbit bifurcations and local symmetry restorations in exotic-shape nuclear mean fields
doi: 10.1088/1402-4896/aa71cd
2016AR14 Phys.Scr. 91, 063002 (2016) Nuclear shell structures in terms of classical periodic orbits
doi: 10.1088/0031-8949/91/6/063002
2015KO17 Phys.Scr. 90, 114011 (2015) M.V.Koliesnik, Y.D.Krivenko-Emetov, A.G.Magner, K.Arita, M.Brack Semiclassical treatment of symmetry breaking and bifurcations in a non-integrable potential
doi: 10.1088/0031-8949/90/11/114011
2014AR03 Phys.Rev. C 89, 054308 (2014) Semiclassical origin of the anomalous shell effect for tetrahedral deformation in the radial power-law potential model
doi: 10.1103/PhysRevC.89.054308
2012AR08 Phys.Rev. C 86, 034317 (2012) Periodic-orbit approach to nuclear shell structures with power-law potential models: Bridge orbits and prolate-oblate asymmetry
doi: 10.1103/PhysRevC.86.034317
2006AR24 Phys.Scr. T125, 14 (2006) Periodic-orbit bifurcations as the origin of nuclear deformations
doi: 10.1088/0031-8949/2006/T125/003
2006MA16 Prog.Theor.Phys.(Kyoto) 115, 523 (2006) A.G.Magner, K.Arita, S.N.Fedotkin Semiclassical Approach for Bifurcations in a Smooth Finite-Depth Potential
doi: 10.1143/PTP.115.523
2004AR05 Int.J.Mod.Phys. E13, 191 (2004) Semiclassical origin of shell structures in deformed nuclei: Dependence on surface diffuseness and effect of spin-orbit couplings
doi: 10.1142/S0218301304001941
1998AR19 Prog.Theor.Phys.(Kyoto) 100, 1223 (1998) K.-I.Arita, A.Sugita, K.Matsuyanagi Semiclassical Origin of Superdeformed Shell Structure in the Spheroidal Cavity Model
doi: 10.1143/PTP.100.1223
1998SU31 Prog.Theor.Phys.(Kyoto) 100, 597 (1998) A.Sugita, K.-I.Arita, K.Matsuyanagi Periodic-Orbit Bifurcation and Shell Structure in Reflection-Asymmetric Deformed Cavity
doi: 10.1143/PTP.100.597
1995AR19 Nucl.Phys. A592, 9 (1995) Classical Bifurcation and Enhancement of Quantum Shells: Systematic analysis of reflection-asymmetric deformed oscillator
doi: 10.1016/0375-9474(95)00219-Q
1994AR20 Phys.Lett. 336B, 279 (1994) New Shell Structure Originated from the Combination of Quadrupole and Octupole Deformations
doi: 10.1016/0370-2693(94)90532-0
1994AR28 Prog.Theor.Phys.(Kyoto) 91, 723 (1994) Semiclassical Analysis of the Supershell Effect in Reflection-Asymmetric Superdeformed Oscillator
doi: 10.1143/ptp/91.4.723
1993AR16 Prog.Theor.Phys.(Kyoto) 89, 389 (1993) Octupole Instability of the Closed-Shell Configurations in the Superdeformed Oscillator Potential NUCLEAR STRUCTURE A=40-160; calculated shell structure energy vs particle number, octupole deformation parameter; deduced octupole instability, superdeformed shape connection. Closed shell configurations, axially-symmetric harmonic oscillator potential.
doi: 10.1143/ptp/89.2.389
1993MI10 Nucl.Phys. A557, 125c (1993) S.Mizutori, T.Nakatsukasa, K.Arita, Y.R.Shimizu, K.Matsuyanagi Octupole Correlations in Superdeformed High-Spin States NUCLEAR STRUCTURE 158,156,154,152,150,148,146,144,142Gd, 184,186,188,190,192,194,196,198,200Hg; calculated curvature against octupole deformation, stretched octupole strengths; deduced octupole instability, superdeformed shape relationship.
doi: 10.1016/0375-9474(93)90536-7
1988OG01 Nucl.Instrum.Methods Phys.Res. A271, 280 (1988) Shell-Model Study of the First Forbidden 205Tl → 205Pb Transition and Solar Neutrino Detection NUCLEAR STRUCTURE 205Tl; calculated first forbidden β-transition matrix elements, log ft. 206,207Tl, 206,205Hg, 205Pb; calculated first forbidden β-transition log ft. Shell model.
doi: 10.1016/0168-9002(88)90169-6
1984OG01 Phys.Rev. C30, 1159 (1984) S.Oguro, Y.Mizuno, T.Terasawa, Y.Torizuka, Y.Kawazoe, K.Arita 180° Electroexcitation of Isobaric Analog States in 40Ca NUCLEAR REACTIONS 40Ca(e, e'), E=120 MeV; measured σ(E(e'), θ=180°). 40Ca deduced IAS level transverse form factors.
doi: 10.1103/PhysRevC.30.1159
1981AR05 Phys.Rev. C23, 1482 (1981) K.Arita, A.Enomoto, S.Oguro, Y.Mizuno, T.Nakazato, S.Ohsawa, T.Saito, T.Terasawa, Y.Torizuka Magnetization Distribution of 51V Studied by Elastic Electron Scattering through 180° NUCLEAR REACTIONS 51V(e, e), E=80.84-229 MeV; measured σ(E, 180°). 51V level deduced M3, M5, M7 form factors. First-order configuration mixing, j-j coupling, core polarization.
doi: 10.1103/PhysRevC.23.1482
1978MA10 Nucl.Phys. A297, 347 (1978); Erratum Nucl.Phys. A308, 532 (1978) Nuclear Structure Study of 96Tc and Multiplet Structure in Doubly Odd Tc and Nb Isotopes NUCLEAR REACTIONS 96Mo(d, 2nγ), E=7-12 MeV; measured Eγ, Iγ, I(ce), γγ-coin, pγ-coin, relative σ(E, Eγ). 96Tc deduced levels, J, π, ICC, B(λ). 92,94,96Nb, 94,95,96,98Tc, 97Ru; calculated μ. Shell model, enriched targets, Ge(Li), Si(Li) detectors.
doi: 10.1016/0375-9474(78)90281-6
1976MO04 Phys.Rev.Lett. 36, 566 (1976) J.R.Moreira, I.C.Nascimento, K.Arita, J.Friedrich, A.Enomoto, T.Terasawa, Y.Torizuka Elastic Electron Scattering from the M7 and M9 Magnetization Density of 209Bi NUCLEAR REACTIONS 209Bi(e, e), E=180, 200, 220 MeV; measured M7, M9 σ; deduced form factors.
doi: 10.1103/PhysRevLett.36.566
1971AR27 Nucl.Phys. A173, 97 (1971) The Non-Normal Parity States of 209Bi and 207Pb NUCLEAR STRUCTURE 209Bi, 207Pb; calculated non-normal parity levels. Shell model; 1h-2p, 2h-1p configurations.
doi: 10.1016/0375-9474(71)90750-0
1969AR11 Phys.Letters 30B, 14 (1969) Shell Model Calculation of the Septuplet in 209Bi NUCLEAR STRUCTURE 209Bi; calculated levels, wave functions.
doi: 10.1016/0370-2693(69)90273-1
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