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NSR database version of May 24, 2024.

Search: Author = A.Garai

Found 4 matches.

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2020GU04      Appl.Radiat.Isot. 158, 108923 (2020)

G.Gupta, H.Krishnamoorthy, A.Garai, A.Mazumdar, V.Nanal, A.Shrivastava, R.G.Pillay

Thermal neutron-induced γ-ray background in 124Sn

NUCLEAR REACTIONS 124Sn(n, γ), E thermal; measured reaction products, Eγ, Iγ; deduced γ-ray energies and intensities, branching ratios, yields.

doi: 10.1016/j.apradiso.2019.108923
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Data from this article have been entered in the XUNDL database. For more information, click here.


2019KR11      Eur.Phys.J. A 55, 136 (2019)

H.Krishnamoorthy, G.Gupta, A.Garai, A.Mazumdar, A.Reza, S.Pal, S.Pethuraj, V.Nanal, A.Shrivastava, R.G.Pillay

Study of γ-ray background from cosmic muon induced neutrons

doi: 10.1140/epja/i2019-12822-3
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2017DO04      Eur.Phys.J. A 53, 74 (2017)

N.Dokania, V.Nanal, G.Gupta, S.Pal, R.G.Pillay, P.K.Rath, V.I.Tretyak, A.Garai, H.Krishnamoorthy, C.Ghosh, P.K.Raina, K.G.Bhushan

New limit for the half-life of double beta decay of 94Zr to the first excited state of 94Mo

RADIOACTIVITY 94Zr(2β-); measured Eγ, Iγ using TiLES with low background, high efficiency p-type HPGe and three plastic scintillators outside the box; deduced lower T1/2 limit for transition to 94Mo 2+1 state.

doi: 10.1140/epja/i2017-12266-9
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2017GH06      Phys.Rev. C 96, 014309 (2017)

C.Ghosh, A.K.R.Kumar, B.Dey, V.Nanal, R.G.Pillay, P.Arumugam, K.V.Anoop, N.Dokania, A.Garai, G.Gupta, E.T.Mirgule, G.Mishra, D.Mondal, S.Pal, M.S.Pose, P.C.Rout

Giant dipole resonance studies in Ba isotopes at E/A ≈ 5 MeV

NUCLEAR REACTIONS 112Sn(12C, X)124Ba*, E=64 MeV; 124Sn(12C, X)136Ba*, E=52 MeV/nucleon; measured Eγ, Iγ, γγ-coin, multiplicity, giant dipole resonance (GDR) strength functions at TIFR-Mumbai Pelletron Linac Facility. 124,136Ba; deduced GDR parameters of centroids, widths and nuclear deformation parameter β using simulated Monte Carlo statistical model analysis; calculated the free energy surfaces (FESs) at different temperatures and angular momenta. Comparison with thermal shape fluctuation model (TSFM) calculations.

doi: 10.1103/PhysRevC.96.014309
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