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推广的相互作用玻色子模型中基于对偶代数结构的量子相变研究(英文)
引用本文:A. Jalili Majarshin,H. Sabri,潘峰.推广的相互作用玻色子模型中基于对偶代数结构的量子相变研究(英文)[J].原子核物理评论,2018,35(4):482-486.
作者姓名:A. Jalili Majarshin  H. Sabri  潘峰
作者单位:1.辽宁师范大学物理系, 辽宁 大连 116029;
基金项目:国家自然科学基金资助项目(11675071,11747318);中美奇特核理论研究所(CUSTIPEN)(DE-SC0009971);LSU-LNNU协作基金资助。
摘    要:本工作将相互作用玻色子模型推广为包含f-和p-玻色子的情形。利用仿射型代数方法,通过对偶代数结构数值计算了多分量玻色型对力问题。利用对偶关系解析构建了与哈密顿量及其基底相联系的,由幺正的粒子数守恒和非粒子数守恒算符构成的准旋代数。在经该模型对106-116Cd偶偶核素实验能谱拟合的基础上,计算了基态和低激发态中各种玻色子占有率,准γ带中相邻能级摇摆等几个能特征该区域核素形状相变的序参量。从而展示了这些中重质量核从振动到γ-不稳定运动的形状相变行为。An extension of the original interacting boson model to the multi-level case including negative parity f-and p-bosons is made. An affinealgebraic approach is applied to solve the multi-level pairing problem numerically via the dual algebraic structure. The duality relation is explicitly used to construct the number-conserving unitary and number-nonconserving quasi-spin algebra, related with the Hamiltonian and the corresponding bases. After fitting to the experimental level energies of even-even 106-116Cd, several order parameters to signify the shape (phase) transition, such as occupation numbers of the bosons in the ground and a few lowest excited states, the level energy staggering in the (quasi)-γ band, are calculated to demonstrate the shape (phase) transitional behavior of these medium mass transitional nuclei.

关 键 词:负宇称态    仿射型代数    对偶代数结构    相变特征量
收稿时间:2018-09-23

Quantum Phase Transition in an Extension of the Interacting Boson Model Based on Dual Algebraic Structure
A. Jalili Majarshin,H. Sabri,PAN Feng.Quantum Phase Transition in an Extension of the Interacting Boson Model Based on Dual Algebraic Structure[J].Nuclear Physics Review,2018,35(4):482-486.
Authors:A Jalili Majarshin  H Sabri  PAN Feng
Institution:1.Department of Physics, Liaoning Normal University, Dalian 116029, Liaoning, China;2.Department of Physics, University of Tabriz, Tabriz 51664, Iran;3.Department of Physics and Astronomy, Louisiana State University, Baton Rouge, Louisiana 70803-4001, USA
Abstract:An extension of the original interacting boson model to the multi-level case including negative parity f-and p-bosons is made. An affinealgebraic approach is applied to solve the multi-level pairing problem numerically via the dual algebraic structure. The duality relation is explicitly used to construct the number-conserving unitary and number-nonconserving quasi-spin algebra, related with the Hamiltonian and the corresponding bases. After fitting to the experimental level energies of even-even 106-116Cd, several order parameters to signify the shape (phase) transition, such as occupation numbers of the bosons in the ground and a few lowest excited states, the level energy staggering in the (quasi)-γ band, are calculated to demonstrate the shape (phase) transitional behavior of these medium mass transitional nuclei.
Keywords:negative parity states  affinejpg
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