Quantum features for a system of two qutrits in the presence of power-law potential field

IF 6.2 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY alexandria engineering journal Pub Date : 2024-11-15 DOI:10.1016/j.aej.2024.11.022
Bahaaudin M. Raffah , K. Berrada , E.M. Khalil , S. Abdel-Khalek
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Abstract

In this article, we present a quantum model of the two-qutrit (T-Q) in the Λ-type configuration interacting with a field mode initially in a coherent state of power lower potential. We analyze the dynamical characteristics of this quantum system, taking into account the influences of both the T-Q initial state and the field parameters. We investigate the entanglement between the T-Q and field, the Q–Q state entanglement, as well as the T-Q quantum coherence. We quantify the nonclassical properties of the power lower potential field based on the evolution of the Mandel parameter. The effects of power lower potential parameters on the evolution of quantum measures such as negativity, quantum coherence, von Neumann entropy, and the Mandel parameter are analyzed when the T-Q are initially in the upper and Bell states. Our findings indicate that the system exhibits a quasi-periodic occurrence of maximum entanglement and coherence when the T-Q are initially in the Bell state.
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存在幂律势场的双质子系统的量子特征
在这篇文章中,我们提出了一个Λ型构型的双质(T-Q)量子模型,它与最初处于功率较低势能相干态的场模式相互作用。我们分析了这个量子系统的动力学特性,同时考虑了 T-Q 初始状态和场参数的影响。我们研究了 T-Q 与场之间的纠缠、Q-Q 状态纠缠以及 T-Q 量子相干性。我们根据曼德尔参数的演化来量化低功率势场的非经典特性。我们分析了当 T-Q 最初处于上态和贝尔态时,低功率势场参数对量子量度(如负性、量子相干性、冯-诺依曼熵和曼德尔参数)演化的影响。我们的研究结果表明,当 T-Q 最初处于贝尔态时,系统呈现出准周期性的最大纠缠和相干性。
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来源期刊
alexandria engineering journal
alexandria engineering journal Engineering-General Engineering
CiteScore
11.20
自引率
4.40%
发文量
1015
审稿时长
43 days
期刊介绍: Alexandria Engineering Journal is an international journal devoted to publishing high quality papers in the field of engineering and applied science. Alexandria Engineering Journal is cited in the Engineering Information Services (EIS) and the Chemical Abstracts (CA). The papers published in Alexandria Engineering Journal are grouped into five sections, according to the following classification: • Mechanical, Production, Marine and Textile Engineering • Electrical Engineering, Computer Science and Nuclear Engineering • Civil and Architecture Engineering • Chemical Engineering and Applied Sciences • Environmental Engineering
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