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NSR database version of May 6, 2024.

Search: Author = D.S.Koltun

Found 22 matches.

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2000MI01      Phys.Rev. C61, 024003 (2000)

A.Misra, D.S.Koltun

Two-Nucleon One-Loop Corrections to Pion Double Charge Exchange within Heavy Baryon Chiral Perturbation Theory

doi: 10.1103/PhysRevC.61.024003
Citations: PlumX Metrics


1999MI02      Nucl.Phys. A646, 343 (1999)

A.Misra, D.S.Koltun

Derivation of the Effective Pion-Nucleon Lagrangian within Heavy Baryon Chiral Perturbation Theory

doi: 10.1016/S0375-9474(98)00625-3
Citations: PlumX Metrics


1998KO03      Phys.Rev. C57, 1210 (1998)

D.S.Koltun

Pion Excess, Nuclear Correlations, and the Interpretation of (p(pol), n(pol)) Spin Transfer Experiments

NUCLEAR STRUCTURE 16O; calculated sum rules; deduced pion excess distribution. Implications for spin transfer reactions.

doi: 10.1103/PhysRevC.57.1210
Citations: PlumX Metrics


1997FE02      Phys.Rev. C55, 253 (1997)

T.C.Ferree, D.S.Koltun

Inelastic Nucleon Contributions in (e, e') Nuclear Response Functions

doi: 10.1103/PhysRevC.55.253
Citations: PlumX Metrics


1995KO30      Phys.Rev. C52, 901 (1995)

D.S.Koltun, T.C.Ferree

Nuclear Binding Effects in Relativistic Coulomb Sum Rules

doi: 10.1103/PhysRevC.52.901
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1994FE04      Phys.Rev. C49, 1961 (1994)

T.C.Ferree, D.S.Koltun

Relativistic Coulomb Sum Rules for (e, e')

doi: 10.1103/PhysRevC.49.1961
Citations: PlumX Metrics


1992JI05      Phys.Rev. C46, 2462 (1992)

M.F.Jiang, D.S.Koltun

Meson Exchange Current Contribution to K+-Nucleus Scattering

NUCLEAR REACTIONS 2H, 12C(K+, K+), E at 450-980 MeV/c; analyzed σ(ratio) data; deduced meson exchange currents role.

doi: 10.1103/PhysRevC.46.2462
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1990JI04      Phys.Rev. C42, 2662 (1990)

M.F.Jiang, D.S.Koltun

Contribution of Meson Exchange Currents to Pion Double Charge Exchange at Low Energies

NUCLEAR REACTIONS 42Ca(π+, π-), E not given; calculated scattering amplitude; deduced meson exchange current contributions.

doi: 10.1103/PhysRevC.42.2662
Citations: PlumX Metrics


1989KO04      Phys.Rev. C39, 704 (1989)

D.S.Koltun, M.K.Singham

Pion Charge Exchange and the Optical Theorem

NUCLEAR STRUCTURE 60Ni, 90Zr, 208Pb, 56Fe, 93Nb, 209Bi; calculated pion charge exchange features; deduced isotensor optical potential term features. Optical theorem.

doi: 10.1103/PhysRevC.39.704
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1985GI05      Phys.Rev. C31, 2147 (1985)

V.Girija, D.S.Koltun

Transport Theory for Inclusive Pion Reactions and Mean Proton Momentum for (π, p)

NUCLEAR REACTIONS 12C, 27Al, 56Fe, 93Nb, 209Bi(π, pX), E=165-315 MeV; calculated inclusive absorption, inelastic σ(E). Transport theory.

doi: 10.1103/PhysRevC.31.2147
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1984GI04      Phys.Rev.Lett. 52, 1397 (1984)

V.Girija, D.S.Koltun

Nuclear (π, p) Reaction is Consistent with a 2N Absorption Process

NUCLEAR REACTIONS 56Fe, 93Nb, 209Bi(π, pX), E=165, 245 MeV; 58Ni, 181Ta(π, pX), E=100, 160, 220 MeV; analyzed inclusive data; deduced σ(absorption), absorption mechanism, incoherent multiple scattering induced mean momentum loss.

doi: 10.1103/PhysRevLett.52.1397
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1982SH17      Phys.Rev. C26, 658 (1982)

Shaheen Rab, D.S.Koltun

Two-Body Current Contribution to M1 Transitions and Moments in 38Cl and 40K

NUCLEAR STRUCTURE 38Cl, 40K; analyzed B(M1), μ data; deduced two-body M1 operator. Shell Model.

doi: 10.1103/PhysRevC.26.658
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1977KO25      Z.Phys. A283, 397 (1977)

D.S.Koltun, F.Myhrer

Theory of Pion-Nucleus Scattering Lengths

NUCLEAR REACTIONS 4He, 11B, 12C, 14N, 16O(π-, π-); calculated contributions to scattering length.

doi: 10.1007/BF01409521
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1977MI14      Ann.Phys.(New York) 109, 1 (1977)

T.Mizutani, D.S.Koltun

Coupled Channel Theory of Pion-Deuteron Reaction Applied to Threshold Scattering

NUCLEAR REACTIONS 2H(π-, π-); calculated scattering parameters.

doi: 10.1016/0003-4916(77)90164-6
Citations: PlumX Metrics


1975GO08      Nucl.Phys. A243, 44 (1975)

P.Goode, D.S.Koltun

The Average Effective Interaction in Linked Cluster Theory

NUCLEAR STRUCTURE 6Li; calculated potential mass 6, 18.

doi: 10.1016/0375-9474(75)90021-4
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1974KO01      Phys.Rev. C9, 484 (1974)

D.S.Koltun

Theory of Mean Removal Energies for Single Particles in Nuclei

doi: 10.1103/PhysRevC.9.484
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1974KO14      Phys.Lett. 51B, 19 (1974)

D.S.Koltun, O.Nalcioglu

Sensitivity of Inelastic Pion Scattering to Non-Local Interactions

NUCLEAR REACTIONS 12C(π, π'); calculated σ(θ).

doi: 10.1016/0370-2693(74)90140-3
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1972GO17      Phys.Lett. 39B, 159 (1972)

P.Goode, D.S.Koltun

Behavior of the G-Matrix Expansion for the Average Effective Interaction

doi: 10.1016/0370-2693(72)90761-7
Citations: PlumX Metrics


1972KO01      Phys.Rev.Lett. 28, 182 (1972)

D.S.Koltun

Total Binding Energies of Nuclei, and Particle-Removal Experiments

NUCLEAR STRUCTURE 12C, 40Ca, 120Sn, 208Pb; calculated proton binding energy.

doi: 10.1103/PhysRevLett.28.182
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1971GO05      Phys.Rev. C3, 1527 (1971)

P.Goode, D.S.Koltun, B.J.West

Effective-Interaction Theory of Nuclear Spectral Relations. II

NUCLEAR STRUCTURE 42,48Sc, 54Co; calculated levels. Effective interaction theory.

doi: 10.1103/PhysRevC.3.1527
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1969WE12      Phys.Rev. 187, 1315 (1969)

B.J.West, D.S.Koltun

Effective-Interaction Theory of Nuclear Spectral Relations. I. Particle-Hole Relations

NUCLEAR STRUCTURE 42,48Sc; calculated levels. Shell model, effective interaction from Brueckner-Goldstone many-body theory.

doi: 10.1103/PhysRev.187.1315
Citations: PlumX Metrics


1965KO25      Phys.Rev. 139, B1372 (1965)

D.S.Koltun, A.Reitan

Double-Charge-Exchange Scattering of Low-Energy Pions by Nuclei

NUCLEAR REACTIONS 18O(π+, π-), E=20-40 MeV; calculated double-charge-exchange σ(θ) in second Born approximation considering only s-wave scattering of the pions by individual nucleons.

doi: 10.1103/PhysRev.139.B1372
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