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NSR database version of May 24, 2024.

Search: Author = D.Troltenier

Found 16 matches.

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1998ES05      Nucl.Phys. A633, 662 (1998)

J.Escher, C.Bahri, D.Troltenier, J.P.Draayer

Pairing-Plus-Quadrupole Model and Nuclear Deformation: A look at the spin-orbit interaction

doi: 10.1016/S0375-9474(98)00115-8
Citations: PlumX Metrics

1996RO08      Z.Phys. A354, 359 (1996)

D.Rompf, J.P.Draayer, D.Troltenier, W.Scheid

Algebraic Realization of a Coupled Rotor Picture

doi: 10.1007/s002180050058
Citations: PlumX Metrics

1996RO22      Roum.J.Phys. 41, 193 (1996)

D.Rompf, J.P.Draayer, D.Troltenier, W.Scheid

Coupled Quantum Rotors and Their SU(3) Realization

1996TR02      Z.Phys. A354, 125 (1996)

D.Troltenier, C.Bahri, J.Escher, J.P.Draayer

Rare-Earth Nuclei and the Pseudo-SU(3) Model

NUCLEAR STRUCTURE 136Xe, 138Ba, 204Hg; calculated levels, B(λ), quadrupole moments, g(R) factors. Extended pseudo-SU(3) model.

doi: 10.1007/s002180050023
Citations: PlumX Metrics

1996TR05      Nucl.Phys. A601, 56 (1996)

D.Troltenier, J.P.Draayer, B.R.S.Babu, J.H.Hamilton, A.V.Ramayya, V.E.Oberacker

The 108,110,112Ru Isotopes in the Generalized Collective Model

NUCLEAR STRUCTURE 108,110,112Ru; calculated potential energy surfaces, levels, B(λ). Generalized collective model.

doi: 10.1016/0375-9474(96)00018-8
Citations: PlumX Metrics

1996TR06      Nucl.Phys. A601, 89 (1996)

D.Troltenier, J.P.Draayer, J.G.Hirsch

Correlations between the Quadrupole Deformation, B(E2; 01 → 21) Value, and Total GT(+) Strength

NUCLEAR STRUCTURE 20Ne; calculated levels, B(λ), Gamow-Teller transition strength. Deformed nucleus, SU(3) shell model.

doi: 10.1016/0375-9474(96)00092-9
Citations: PlumX Metrics

1995NA10      Z.Phys. A351, 259 (1995)

H.A.Naqvi, C.Bahri, D.Troltenier, J.P.Draayer, A.Faessler

Algebraic Realization of the Quantum Rotor-Odd-A Nuclei

NUCLEAR STRUCTURE 25Mg; calculated normal SU(3) symmetry eigenvalues. 159Dy, 165Er; calculated pseudo-SU(3) symmetry eigenvalues. Quantum rotor algebraic realizations. 23Na; calculated eigenstates. Algebraic realization of the many-particle Nilsson model.

doi: 10.1007/BF01290907
Citations: PlumX Metrics

1995TR01      Nucl.Phys. A586, 53 (1995)

D.Troltenier, C.Bahri, J.P.Draayer

Generalized Pseudo-SU(3) Model and Pairing

doi: 10.1016/0375-9474(94)00518-R
Citations: PlumX Metrics

1995TR04      Nucl.Phys. A589, 75 (1995)

D.Troltenier, C.Bahri, J.P.Draayer

Effects of Pairing in the Pseudo-SU(3) Model

NUCLEAR STRUCTURE 140Ce; calculated levels. Pseudo-SU(3) model.

doi: 10.1016/0375-9474(95)00078-F
Citations: PlumX Metrics

1994TR04      Z.Phys. A348, 1 (1994)

D.Troltenier, J.A.Maruhn, W.Greiner

The g(R)-Factor of Rare-Earth Nuclei in the Geometric Collective Model

NUCLEAR STRUCTURE 166,168,170Er; calculated potential energy surfaces, levels, intraground state band B(λ), g(R)-factor vs angular momentum. 156,158,160Gd, 160,164Dy, 170,172,174Yb; calculated g(R)-factor vs angular momentum. Geometric collective model, parameter-free collective magnetic dipole operator.

doi: 10.1007/BF01291645
Citations: PlumX Metrics

1994TR09      Nucl.Phys. A576, 351 (1994)

D.Troltenier, J.P.Draayer, P.O.Hess, O.Castanos

Investigations of Rotational Nuclei via the Pseudo-Symplectic Model

NUCLEAR STRUCTURE 160Dy, 168Er, 234,236,238U; calculated levels, B(λ), static quadrupole moments; deduced model limiting features. Pseudo-symplectic theory, review.

doi: 10.1016/0375-9474(94)90249-6
Citations: PlumX Metrics

1994VA23      Nucl.Phys. A577, 605 (1994)

H.van Geel, P.O.Hess, D.Troltenier, J.A.Maruhn, W.Greiner

Microscopically Derived Potential-Energy Surfaces for the Chain of Sm-Isotopes

NUCLEAR STRUCTURE 148,150,152Sm; calculated levels, potential energy surfaces. Microscopic approach.

doi: 10.1016/0375-9474(94)90935-0
Citations: PlumX Metrics

1992GR12      Z.Phys. A343, 209 (1992)

S.Graf, D.Troltenier, A.Schafer, W.Greiner

The Influence of Giant Resonances on the Production of δ-Electrons in Heavy Ion Collisions

NUCLEAR REACTIONS Pb(U, U), E=6.1 MeV/nucleon; analyzed δ-electron spectra; deduced giant resonances role in δ-electron production. Semi-classical formalism.

doi: 10.1007/BF01291825
Citations: PlumX Metrics

1992TR04      Z.Phys. A343, 25 (1992)

D.Troltenier, J.A.Maruhn, W.Greiner, P.O.Hess

A General Numerical Solution of Collective Quadrupole Surface Motion Applied to Microscopically Calculated Potential Energy Surfaces

NUCLEAR STRUCTURE 190Pt, 238U; calculated levels, potential energy surfaces, B(λ). Pseudo-symplectic model.

doi: 10.1007/BF01291593
Citations: PlumX Metrics

1991TR01      Z.Phys. A338, 261 (1991)

D.Troltenier, J.A.Maruhn, W.Greiner, V.V.Aguilar, P.O.Hess, J.H.Hamilton

Shape Transitions and Shape Coexistence in the Ru and Hg Chains

NUCLEAR STRUCTURE 182,184,186,188,190,192,194,196Hg, 96,98,100,102,104,106,108Ru; calculated levels, B(λ), potential energy surfaces, quadrupole moments.

doi: 10.1007/BF01288188
Citations: PlumX Metrics

1989TR08      Nucl.Phys. A494, 235 (1989)

D.Troltenier, J.A.Maruhn, W.Greiner, S.G.Rohozinski

An Extended Version of the Rotation-Vibration Model with Different Proton and Neutron Deformations

NUCLEAR STRUCTURE 166,168Er; calculated levels, δ(E2/M1). 152Sm; calculated levels, g(R)-factors, δ(E2/M1). Rotation-vibration model.

doi: 10.1016/0375-9474(89)90021-3
Citations: PlumX Metrics

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