Production and protection of entanglement via vacuum induced coherences

IF 1.5 4区 物理与天体物理 Q3 OPTICS Journal of Physics B: Atomic, Molecular and Optical Physics Pub Date : 2024-03-13 DOI:10.1088/1361-6455/ad2d5d
Anjali N Nair, R Arun
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Abstract

The entanglement dynamics of a pair of three-level V-type atoms decaying spontaneously in a common vacuum reservoir is investigated. Under the condition that the decaying transitions in the atoms have parallel dipole moments, the effect of coherences induced by spontaneous emission is considered in the atomic dynamics. We show that vacuum-induced coherence (VIC) and collective effects in atomic decay play a significant role in the creation of entanglement. By using negativity as a measure of entanglement, we study the time evolution of entanglement for initial separable and generalized Dicke states as well as maximally entangled qutrit states. We show that the effects of VIC enhance the production of entanglement from initial separable states of the atoms. We also show that the entanglement can be protected in steady-state for atoms evolving from initial entangled states. The amount of entanglement that can be preserved is more in the presence of VIC than in its absence.
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通过真空诱导相干产生和保护纠缠
研究了一对三电平 V 型原子在共同真空储层中自发衰变的纠缠动力学。在原子衰变跃迁具有平行偶极矩的条件下,原子动力学考虑了自发发射诱导的相干效应。我们表明,原子衰变中的真空诱导相干性(VIC)和集体效应在纠缠的产生中起着重要作用。通过使用负性作为纠缠度量,我们研究了初始可分离态和广义迪克态以及最大纠缠qutrit态的纠缠时间演化。我们发现,VIC 的效应增强了原子初始可分离态的纠缠生成。我们还证明,对于从初始纠缠态演化而来的原子,纠缠可以在稳态中得到保护。在有 VIC 的情况下,能保存的纠缠量比没有 VIC 的情况下更多。
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来源期刊
CiteScore
3.60
自引率
6.20%
发文量
182
审稿时长
2.8 months
期刊介绍: Published twice-monthly (24 issues per year), Journal of Physics B: Atomic, Molecular and Optical Physics covers the study of atoms, ions, molecules and clusters, and their structure and interactions with particles, photons or fields. The journal also publishes articles dealing with those aspects of spectroscopy, quantum optics and non-linear optics, laser physics, astrophysics, plasma physics, chemical physics, optical cooling and trapping and other investigations where the objects of study are the elementary atomic, ionic or molecular properties of processes.
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