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Rotational bands in the doubly odd nucleus 134Pr

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In this article, the π[541] 3 2 − (α=± 1 2 )⊗ν[514] 9 2 − and π [423] 5 2 + ⊗n[514]-9 2 − configurations have been extended to higher spins.
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This article is published in Nuclear Physics.The article was published on 1996-01-22. It has received 74 citations till now.

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Spontaneous symmetry breaking in rotating nuclei

TL;DR: In this article, the concept of spontaneous symmetry breaking is applied to the rotating mean field of nuclei, which is based on the tilted-axis cranking model, taking into account that the rotational axis can take any orientation with respect to the deformed density distribution.
Journal ArticleDOI

Tilted rotation of triaxial nuclei

S. Frauendorf, +1 more
- 05 May 1997 - 
TL;DR: In this paper, the authors apply the tilted axis turning theory to the model of two particles coupled to a triaxial rotor and compare the interpretation and quality of the mean field approximation.
Journal ArticleDOI

Chiral degeneracy in triaxial 104Rh

TL;DR: Chiral doublet bands based on the pi g(9/2) multiply sign in circle nu h(11/2] configuration that achieve degeneracy at spin I=17 in the odd-odd triaxial 104Rh nucleus have been observed.
Journal Article

Chiral Degeneracy in Triaxial ^1^0^4Rh

D. B. Fossan, +1 more
Journal ArticleDOI

Nuclear Data Sheets for A = 134

TL;DR: In this article, experimental data on ground and excited-state properties for all known nuclei with mass number A = 134 have been compiled and evaluated, and level and decay schemes, as well as tables of nuclear properties are given.
References
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Journal ArticleDOI

Table of nuclear moments

TL;DR: A compilation of experimental data on static nuclear magnetic dipole ane electric quadrupole moments for ground state and excited states of nuclides from {sup 1}H to {sup 254}Es is presented in this article.
Journal ArticleDOI

Quasiparticle spectra near the yrast line

TL;DR: In this article, the yrast spectra of the nuclides 68 ≦ Z ≦ 70, 89 ≦ N ≦ 99 were analyzed in terms of quasiparticle configurations in a deformed field rotating with the frequency ω, and the excitation energy, e', in the rotating frame (Routhian) and the aligned angular momentum, i, relative to the ground state band as functions of ω were extracted from the experimental rotational bands which were classified with respect to their signature, α, and parity, π.
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Electromagnetic radiation of rotating nuclei

TL;DR: In this paper, an intrinsic representation of the radiative multipole operators is derived, which enables one to calculate directly electromagnetic transition amplitudes with cranking states, in this way both the orientation of the intrinsic system in space and the structure of the quasiparticles can be properly taken into account.
Journal ArticleDOI

Highly deformed intruder bands in the A≈130 mass region

TL;DR: Deformed shell model calculations based on an average Woods-Saxon potential with a monopole pairing force included show for a number of nuclei close to A≈130 the appearance of rotational bands with a large deformation, s2≈0.4 as discussed by the authors.
Journal ArticleDOI

Shape of rotating quasiparticle orbits and signature splitting in La, Ce, and Pr nuclei

TL;DR: A simple semiclassical picture of the rotating spatial density distribution for spin-aligned high-j$ quasiparticles emerges from the cranking model as mentioned in this paper, and evidence for the physical relevance of this picture can be sought in the signature splitting of rotational bands in soft nuclei.
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