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

dc.contributor.authorGhosh, C.
dc.contributor.authorKumar, A.K.R.
dc.contributor.authorDey, B.
dc.contributor.authorNanal, V.
dc.contributor.authorPillay, R.G.
dc.contributor.authorArumugam, P.
dc.contributor.authorAnoop, K.V.
dc.contributor.authorDokania, N.
dc.contributor.authorGarai, A.
dc.contributor.authorGupta, G.
dc.contributor.authorMirgule, E.T.
dc.contributor.authorMishra, G.
dc.contributor.authorMondal, D.
dc.contributor.authorPal, S.
dc.contributor.authorPose, M.S.
dc.contributor.authorRout, P.C.
dc.date.accessioned2020-03-31T08:31:19Z
dc.date.available2020-03-31T08:31:19Z
dc.date.issued2017
dc.description.abstractExclusive measurements of high-energy ? rays have been performed in Ba124 and Ba136 at the same excitation energy (?49MeV) to study the properties of the giant dipole resonance (GDR) over a wide N/Z range. The high-energy ? rays are measured in coincidence with the multiplicity of low-energy ? rays to disentangle the effect of temperature (T) and angular momentum (J). The GDR parameters are extracted employing a simulated Monte Carlo statistical model analysis. The observed ?-ray spectra of Ba124 can be explained with prolate deformation, whereas a single-component Lorentzian function which corresponds to a spherical shape could explain the ?-ray spectra of Ba136. The observed GDR width in Ba136 is narrower compared to that of Ba124. The statistical model best-fit GDR cross sections are found to be in reasonable agreement with the thermal shape fluctuation model (TSFM) calculations. Further, it is shown that the variation of GDR width with T is well reproduced by the TSFM calculations over the temperature range of 1.1-1.7 MeV. 2017 American Physical Society.en_US
dc.identifier.citationPhysical Review C, 2017, Vol.96, 1, pp.-en_US
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/11410
dc.titleGiant dipole resonance studies in Ba isotopes at E/A?5 MeVen_US
dc.typeArticleen_US

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