分数参数和衰变参数对 SU(1,1) 量子系统与三层原子相互作用的影响

IF 2.2 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Annalen der Physik Pub Date : 2024-07-31 DOI:10.1002/andp.202400080
A.‐S. F. Obada, M. Abu‐Shady, E. M. Khalil, H. F. Habeba
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引用次数: 0

摘要

通过广义分数导数,研究了衰变项和分数参数如何影响量子系统,特别是苏(1,1)代数系统与三电平原子之间的相互作用。通过将微分方程转化为分数微分方程,得到了一般分数解。研究了衰变和分数参数对复兴和坍缩、熵挤压、纯度和并发等现象的影响。结果表明了衰变和分形参数如何影响坍缩和复苏期。值得注意的是,衰变参数缩短了坍缩期,而分形参数的增加则导致坍缩期的延长。衰变参数还降低了量子系统不同组成部分之间的纠缠程度,而增加分数参数则增强了量子系统内部的纠缠。因此,可以得出结论,分数参数在观察到的对所研究特性的影响中起着至关重要的作用。
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Influence of Fractional and Decay Parameters on the SU(1,1) Quantum System Interaction with Three‐Level Atom
Through the generalized fractional derivative, it is studied how the decay term and the fractional parameter affect the quantum system, specifically the interaction between the SU(1,1) algebraic system and a three‐level atom. By transforming the differential equations into fractional differential equations, general fractional solutions are obtained. The influence of decay and fractional parameter on phenomena such as revival and collapse, entropy squeezing, purity, and concurrence are investigated. The results demonstrate how both decay and fractal parameter affect periods of collapse and revival. It is worth noting that the decay parameter shortens the collapse periods, while an increase in the fractional parameter leads to longer collapse periods. The decay parameter also reduces the degree of entanglement between the different components of the quantum system, while increasing the fractional parameter enhances the entanglement within the quantum system. Hence, it can be concluded that the fractional parameter plays a crucial role in the observed effects on the studied properties.
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来源期刊
Annalen der Physik
Annalen der Physik 物理-物理:综合
CiteScore
4.50
自引率
8.30%
发文量
202
审稿时长
3 months
期刊介绍: Annalen der Physik (AdP) is one of the world''s most renowned physics journals with an over 225 years'' tradition of excellence. Based on the fame of seminal papers by Einstein, Planck and many others, the journal is now tuned towards today''s most exciting findings including the annual Nobel Lectures. AdP comprises all areas of physics, with particular emphasis on important, significant and highly relevant results. Topics range from fundamental research to forefront applications including dynamic and interdisciplinary fields. The journal covers theory, simulation and experiment, e.g., but not exclusively, in condensed matter, quantum physics, photonics, materials physics, high energy, gravitation and astrophysics. It welcomes Rapid Research Letters, Original Papers, Review and Feature Articles.
期刊最新文献
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