From chiral vibration to tilted-axis wobbling within broken chiral symmetry

The effect of non-axial rigid alignment of the quasiparticle spins on the behaviour of the chiral partner bands is investigated within a semiclassical treatment of a particle-rotor Hamiltonian. A valence h11/2 proton particle and a h11/2 neutron hole are used to calculate the energy spectrum of the...

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Main Author: R. Budaca
Format: Article
Language:English
Published: Elsevier 2021-06-01
Series:Physics Letters B
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0370269321002483
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spelling doaj-a460dc3dd636438d9aab61deb204a6aa2021-05-28T04:59:40ZengElsevierPhysics Letters B0370-26932021-06-01817136308From chiral vibration to tilted-axis wobbling within broken chiral symmetryR. Budaca0Department of Theoretical Physics, Horia Hulubei National Institute for Physics and Nuclear Engineering, Reactorului 30, RO-077125, POB-MG6, Bucharest-Magurele, RomaniaThe effect of non-axial rigid alignment of the quasiparticle spins on the behaviour of the chiral partner bands is investigated within a semiclassical treatment of a particle-rotor Hamiltonian. A valence h11/2 proton particle and a h11/2 neutron hole are used to calculate the energy spectrum of the chiral partner bands as a function of the angles defining the rigid alignments of the quasiparticle spins. Distinct dynamical characteristics are identified in specific angular momentum ranges and tilting angles. It is found that the high spin static chirality regime transforms into a wobbling tilted axis rotation at sufficiently high deviations of the quasiparticle spins from the principal intrinsic axes. The experimental realization of the model is exemplified for the chiral bands of 132Pr and 138Pm.http://www.sciencedirect.com/science/article/pii/S0370269321002483Chiral symmetryWobbling motionTriaxial nucleiAsymmetrical double-well potential
collection DOAJ
language English
format Article
sources DOAJ
author R. Budaca
spellingShingle R. Budaca
From chiral vibration to tilted-axis wobbling within broken chiral symmetry
Physics Letters B
Chiral symmetry
Wobbling motion
Triaxial nuclei
Asymmetrical double-well potential
author_facet R. Budaca
author_sort R. Budaca
title From chiral vibration to tilted-axis wobbling within broken chiral symmetry
title_short From chiral vibration to tilted-axis wobbling within broken chiral symmetry
title_full From chiral vibration to tilted-axis wobbling within broken chiral symmetry
title_fullStr From chiral vibration to tilted-axis wobbling within broken chiral symmetry
title_full_unstemmed From chiral vibration to tilted-axis wobbling within broken chiral symmetry
title_sort from chiral vibration to tilted-axis wobbling within broken chiral symmetry
publisher Elsevier
series Physics Letters B
issn 0370-2693
publishDate 2021-06-01
description The effect of non-axial rigid alignment of the quasiparticle spins on the behaviour of the chiral partner bands is investigated within a semiclassical treatment of a particle-rotor Hamiltonian. A valence h11/2 proton particle and a h11/2 neutron hole are used to calculate the energy spectrum of the chiral partner bands as a function of the angles defining the rigid alignments of the quasiparticle spins. Distinct dynamical characteristics are identified in specific angular momentum ranges and tilting angles. It is found that the high spin static chirality regime transforms into a wobbling tilted axis rotation at sufficiently high deviations of the quasiparticle spins from the principal intrinsic axes. The experimental realization of the model is exemplified for the chiral bands of 132Pr and 138Pm.
topic Chiral symmetry
Wobbling motion
Triaxial nuclei
Asymmetrical double-well potential
url http://www.sciencedirect.com/science/article/pii/S0370269321002483
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