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NSR database version of April 11, 2024.

Search: Author = N.Lingappa

Found 9 matches.

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1994BA40      J.Phys.(London) B27, 715 (1994)

K.M.Balakrishna, N.G.Nayak, N.Lingappa, K.Siddappa

K Fluorescence Yield Measurements in Rare Earth and Heavy Elements

NUCLEAR REACTIONS Cu, Mo, Ag, Cd, Sn, Pr, Sm, Gd, Dy, Ho, Yb, Ta, W, Pb, Th, U(γ, X), E=59.5, 279.2 keV; measured K X-ray fluorescence yields.

ATOMIC PHYSICS Cu, Mo, Ag, Cd, Sn, Pr, Sm, Gd, Dy, Ho, Yb, Ta, W, Pb, W, Pb, Th, U(γ, X), E=59.5, 279.2 keV; measured K X-ray fluorescence yields.

doi: 10.1088/0953-4075/27/4/010
Citations: PlumX Metrics


1992NA10      Phys.Rev. A45, 4490 (1992)

N.G.Nayak, K.Siddappa, K.M.Balakrishna, N.Lingappa

Coherent Scattering of 59.5-keV γ Rays by Some Medium and Heavy Elements

NUCLEAR REACTIONS Cu, Mo, Ag, Cd, Sn, Pr, Sm, Gd, Dy, Ho, Yb, Ta, W, Pb, Th, U(γ, γ), E=59.5 keV; measured coherent scattering σ(θ).

ATOMIC PHYSICS Cu, Mo, Ag, Cd, Sn, Pr, Sm, Gd, Dy, Ho, Yb, Ta, W, Pb, Th, U(γ, γ), E=59.5 keV; measured coherent scattering σ(θ).

doi: 10.1103/PhysRevA.45.4490
Citations: PlumX Metrics


1992PI12      J.Phys.(London) B25, 1155 (1992)

J.K.Pious, K.M.Balakrishna, N.Lingappa, K.Siddappa

Total K Fluorescence Yields for Fe, Cu, Zn, Ge and Mo

NUCLEAR REACTIONS Fe, Cu, Zn, Ge, Mo(γ, X), E=59.5 keV; measured X-ray spectra; deduced total K fluorescence yields. Gamma rays from 241Am source.

ATOMIC PHYSICS Fe, CU, Zn, Ge, Mo(γ, X), E=59.5 keV; measured X-ray spectra; deduced total K fluorescence yields. Gamma rays from 241Am source.

doi: 10.1088/0953-4075/25/6/007
Citations: PlumX Metrics


1990PI18      J.Phys.(London) B23, 3759 (1990)

G.Pinto, N.G.Nayak, K.M.Balakrishna, N.Lingappa, K.Siddappa

Incoherent Scattering of 279.2 keV Gamma Rays by Medium and Heavy Elements

ATOMIC PHYSICS Cu, Mo, Ag, Cd, Sn, Pr, Sm, Gd, Dy, Ho, Yb, Ta, W, Pb, Th, U(γ, γ), E=279.2 keV; measured incoherent σ(θ).

doi: 10.1088/0953-4075/23/21/012
Citations: PlumX Metrics


1985GU11      Phys.Rev. C31, 1965 (1985)

S.K.Gupta, S.Kailas, N.Lingappa, A.Shridhar

Systematics in the Volume Integrals of the Imaginary Part of the Light Ion Optical Potentials

NUCLEAR REACTIONS 12C(α, α), (3He, 3He), E=4-217 MeV; 12C(d, d), E=2-80 MeV; 12C(n, n), E=4-40 MeV; 12C(p, p), E=40-180 MeV; 12C(6Li, 6Li), E=12-156 MeV; 58Ni(6Li, 6Li), (3He, 3He), 208Pb(d, d), 90Zr(α, α), 208Pb(n, n), E ≤ 150 MeV; analyzed imaginary potential volume integral energy dependence; deduced global parameters.

doi: 10.1103/PhysRevC.31.1965
Citations: PlumX Metrics


1984SH22      Phys.Rev. C30, 1760 (1984)

A.Shridhar, N.Lingappa, S.K.Gupta, S.Kailas

Systematics in the Volume Integrals of the Imaginary Part of the Alpha-Nucleus Optical Potentials

NUCLEAR REACTIONS 12C, 27Al, 40Ca, 58Ni, 90Zr, 208Pb(α, α), E=0-200 MeV; calculated potential imaginary part volume integral systematics. Phenomenological optical model.

doi: 10.1103/PhysRevC.30.1760
Citations: PlumX Metrics


1970LI20      Phys.Rev. C2, 1329 (1970)

N.Lingappa, G.W.Greenlees

Inelastic Scattering of 40-MeV Protons by Ni58 and Ni60 and Analysis in Coupled Channels

NUCLEAR REACTIONS 58,60Ni(p, p), (p, p'), E=40 MeV; measured σ(θ), P(θ); deduced optical model parameters. 58,60Ni levels deduced J, π, deformation parameters β(L).

doi: 10.1103/PhysRevC.2.1329
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO0442.


1962LI10      Nuclear Phys. 38, 146 (1962)

N.Lingappa, E.Kondaiah, C.Badrinathan, M.D.Deshpande, M.Balakrishnan

Width of the First Excited State of Sn116

NUCLEAR STRUCTURE 116In; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0029-5582(62)91024-6
Citations: PlumX Metrics


1962LI18      Proc.Nucl.Phys.Symp.(Madras) p.152 (1962)

N.Lingappa, M.D.Deshpande, C.Badrinathan, E.Kondaiah, M.Balakrishnan

Life-Time Measurement of the First Excited State of Sn116

NUCLEAR STRUCTURE 116Sn; measured not abstracted; deduced nuclear properties.


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