NSR Query Results
Output year order : Descending NSR database version of April 26, 2024. Search: Author = T.Schmidt Found 23 matches. 2017KO38 Phys.Rev. C 96, 044305 (2017) D.Kocheva, G.Rainovski, J.Jolie, N.Pietralla, A.Blazhev, R.Altenkirch, S.Ansari, A.Astier, M.Bast, M.Beckers, Th.Braunroth, M.Cappellazzo, A.Dewald, F.Diel, M.Djongolov, C.Fransen, K.Gladnishki, A.Goldkuhle, A.Hennig, V.Karayonchev, J.M.Keatings, E.Kluge, Th.Kroll, J.Litzinger, K.Moschner, C.Muller-Gatermann, P.Petkov, M.Scheck, Ph.Scholz, T.Schmidt, P.Spagnoletti, C.Stahl, R.Stegmann, A.Stolz, A.Vogt, N.Warr, V.Werner, D.Wolk, J.C.Zamora, K.O.Zell, V.Yu.Ponomarev, P.Van Isacker Low collectivity of the 2+1 state of 212Po NUCLEAR REACTIONS 208Pb(12C, 8Be)212Po, E=64 MeV; measured Eγ, Iγ, (particle)γ-coin, half-life of the first 2+ state by recoil-distance Doppler-shift (RDDS) method at the FN Tandem facility of the University of Cologne. 212Po; deduced levels, J, π, B(E2). Comparisons with levels and B(E2) of 210Po and 210Pb, and with theoretical calculations using shell model. Systematics of B(E2) values for the first 2+ states in 20Ne, 44Ti, 52Ti, 136Te, 212Po, nuclei with two valence protons and two valence neutrons.
doi: 10.1103/PhysRevC.96.044305
2017SC11 Phys.Rev. C 96, 014302 (2017) T.Schmidt, K.L.G.Heyde, A.Blazhev, J.Jolie Shell-model-based deformation analysis of light cadmium isotopes NUCLEAR STRUCTURE 98,100,102,104,106,108Cd; calculated levels, J, π, B(E2) using large-scale shell model with the ANTOINE code; deduced deformation parameters β and γ from rotational invariants. Comparison with available experimental data.
doi: 10.1103/PhysRevC.96.014302
2001WA23 Nucl.Instrum.Methods Phys.Res. A463, 634 (2001) J.-S.Wan, Th.Schmidt, E.-J.Langrock, P.Vater, R.Brandt, J.Adam, V.Bradnova, V.P.Bamblevski, L.Gelovani, T.D.Gridnev, V.G.Kalinnikov, M.I.Krivopustov, B.A.Kulakov, A.N.Sosnin, V.P.Perelygin, V.S.Pronskikh, V.I.Stegailov, V.M.Tsupko-Sitnikov, G.Modolo, R.Odoj, P.-W.Phlippen, M.Zamani-Valassiadou, J.C.Adloff, M.Debeauvais, S.R.Hashemi-Nezhad, S.-L.Guo, L.Li, Y.-L.Wang, K.K.Dwivedi, I.V.Zhuk, S.F.Boulyga, E.M.Lomonosova, A.F.Kievitskaya, I.L.Rakhno, S.E.Chigrinov, W.B.Wilson Transmutation of 129I and 237Np using Spallation Neutrons Produced by 1.5, 3.7 and 7.4 GeV Protons NUCLEAR REACTIONS 129I, 237Np(n, γ), E=spectrum; measured transmutation rates. Comparison with model predictions.
doi: 10.1016/S0168-9002(01)00175-9
1997KR19 J.Radioanal.Nucl.Chem. 222, 267 (1997) M.I.Krivopustov, J.Adam, V.Bradnova, R.Brandt, V.S.Butsev, P.I.Golubev, V.G.Kalinnikov, J.Karachuk, B.A.Kulakov, E.-J.Langrock, G.Modolo, M.Ochs, R.Odoj, A.N.Premyshev, V.S.Pronskich, Th.Schmidt, V.I.Stegailov, J.S.Wan, V.M.Zupko-Sitnikov First Experiments on Transmutation Studies of 129I and 237Np using Relativistic Protons of 3.7 GeV NUCLEAR REACTIONS 129I, 237Np(n, γ), E not given; measured σ. Neutrons from relativistic protons on lead target. Application to waste transmutation discussed.
doi: 10.1007/BF02034284
1995BI27 J.Radioanal.Nucl.Chem. 189, 191 (1995) B.Bisplinghoff, V.Bradnova, R.Brandt, K.K.Dwivedi, V.S.Butsev, E.M.Friedlander, S.Gosh, S.-L.Guo, M.Heck, H.Jin, M.I.Krivopustov, B.A.Kulakov, C.Laue, L.Lerman, Th.Schmidt, A.N.Sosnin, Y.-L.Wang Neutron Generation in Massive Cu-Targets During the Irradiation with 22 and 44 GeV Carbon Ions NUCLEAR REACTIONS 139La, 238U(n, γ), E=high; measured residuals, decay, products production rate. Neutron generation in massive Cu targets bombarded by 22, 44 GeV carbon ions.
doi: 10.1007/BF02042598
1993SC10 Z.Phys. A345, 29 (1993) C.Schwarz, H.Fuchs, H.Homeyer, K.Mohring, T.Schmidt, A.Siwek, A.Sourell, W.Terlau, A.Budzanowski Projectile Break-Up with Two Outgoing Intermediate-Mass Fragments in 26 AMeV 32S + 197Au NUCLEAR REACTIONS 197Au(32S, X), E=840 MeV; measured intermediate mass (fragment)(fragment)(θ); deduced fragment pair production mechanism.
doi: 10.1007/BF01290336
1992SC06 Phys.Lett. 279B, 223 (1992) C.Schwarz, H.Fuchs, H.Homeyer, K.Mohring, T.Schmidt, A.Siwek, A.Sourell, W.Terlau, A.Budzanowski Non-Thermal Projectile Breakup Due to Friction Forces NUCLEAR REACTIONS 197Au(32S, X), E=26 MeV/nucleon; measured σ(θα, fragment θ); deduced projectile breakup mechanism.
doi: 10.1016/0370-2693(92)90383-F
1992SU13 Nucl.Phys. A548, 353 (1992) J.Suro, Y.D.Chan, J.A.Scarpaci, R.G.Stokstad, K.Mohring, T.C.Schmidt Projectile Breakup of 16O at 32.5 MeV/A Comparison of a Classical Dynamical Model with Experiment NUCLEAR REACTIONS 197Au(16O, 4α), E=32.5 MeV/nucleon; measured multiple breakup of projectile. Comparison with classical dynamical reaction model.
doi: 10.1016/0375-9474(92)90015-C
1964SP02 Nucl.Phys. 52, 315 (1964); H.Spehl - Priv.Comm. (April 1972) H.Spehl, T.Schmidt, H.Rieseberg, G.Busch Der g-Faktor des 155 keV-2+ Niveaus von Os188 NUCLEAR STRUCTURE 188Os; measured not abstracted; deduced nuclear properties.
doi: 10.1016/0029-5582(64)90695-9
1943SC15 Z.Physik 121, 63 (1943)
1940SC09 Naturwissenchaften 28, 565 (1940)
1939SC15 Z.Physik 112, 199 (1939)
1939SC16 Z.Phys. 112, 199 (1939) Quadrupolmoment und Magnetisches Moment des Atomkern 53127J NUCLEAR MOMENTS 127I; measured μ, quadrupole moment.
doi: 10.1007/BF01340063
1938SC09 Z.Physik 108, 408 (1938); See Also 38S10
1937SC11 Z.Physik 104, 468 (1937)
1936SC07 Z.Physik 100, 113 (1936) Uber das elektrische Quadrupolmoment und das Magnetische Moment von 63Cu und 65Cu
1936SC08 Z.Physik 101, 486 (1936)
1935SC01 Z.Physik 94, 457 (1935) Deviations of Atomic Nucleus from Spherical Symmetry
1935SC02 Naturwissenschaften 23, 69 (1935)
1935SC03 Z.Physik 95, 265 (1935)
1935SC04 Z.Physik 98, 430 (1935); See Also 38Sc10 (Bi209) Bemerkungen zu den elektrischen Quadrupolmomenten einiger Atomkerne und dem magnetischen Moment des protons
1934SC01 Naturwissenschaften 22, 758 (1934)
1934SC03 Naturwissenschaften 22, 838 (1934) Uber die Kernmomente von Thulium (Tu169), Yttrium (Y89) und Rhodium (Rh103)
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