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核手征转动中的临界频率。

Critical frequency in nuclear chiral rotation.

作者信息

Olbratowski P, Dobaczewski J, Dudek J, Płóciennik W

机构信息

Institute of Theoretical Physics, Warsaw University, Hoza 69, PL-00681 Warsaw, Poland.

出版信息

Phys Rev Lett. 2004 Jul 30;93(5):052501. doi: 10.1103/PhysRevLett.93.052501. Epub 2004 Jul 29.

Abstract

Self-consistent solutions for the so-called planar and chiral rotational bands in 132La are obtained for the first time within the Skyrme-Hartree-Fock cranking approach. It is suggested that the chiral rotation cannot exist below a certain critical frequency which under the approximations used is estimated as Planck's omega(crit) approximately 0.5-0.6 MeV. However, the exact values of Planck's omega(crit) may vary, to an extent, depending on the microscopic model used, in particular, through the pairing correlations and/or calculated equilibrium deformations. The existence of the critical frequency is explained in terms of a simple classical model of two gyroscopes coupled to a triaxial rigid body.

摘要

首次在斯凯瑞姆-哈特里-福克转动近似方法中获得了132La中所谓平面和手征转动带的自洽解。研究表明,手征转动在低于某个临界频率时无法存在,在所采用的近似条件下,该临界频率估计为普朗克频率ω(crit)约0.5 - 0.6兆电子伏特。然而,普朗克频率ω(crit)的精确值在一定程度上可能会因所使用的微观模型而有所不同,特别是通过配对关联和/或计算得到的平衡形变。根据耦合到三轴刚体的两个陀螺仪的简单经典模型解释了临界频率的存在。

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