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首页> 外文期刊>Journal of Quantum Information Science >Quantum Fisher Information of Two-Level Atomic System under the Influence of Thermal Field, Intrinsic Decoherence, Stark Effect and Kerr-Like Medium
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Quantum Fisher Information of Two-Level Atomic System under the Influence of Thermal Field, Intrinsic Decoherence, Stark Effect and Kerr-Like Medium

机译:两级原子系统的量子渔业信息在热场,内在脱干术,颗粒效应和克尔样中的影响下

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In this paper, we have proposed the numerical calculations to study the quantum entanglement (QE) of moving two-level atom interacting with a coherent and the thermal field influenced by intrinsic decoherence (ID), Kerr medium (non-linear) and the Stark effect. The wave function of the complete system interacting with a coherent and the thermal field is calculated numerically affected by ID, Kerr (non-linear) and Stark effects. It has been seen that the Stark, Kerr, ID and the thermal environment have a significant effect during the time evolution of the quantum system. Quantum Fisher information (QFI) and QE decrease as the value of the ID parameter is increased in the thermal field without the atomic movement. It is seen that QFI and von Neumann entropy (VNE) show an opposite and periodic response in the presence of atomic motion. The non-linear Kerr medium has a more prominent and significant effect on the QE as the value of the Kerr parameter is decreased. At smaller values of the non-linear Kerr parameter, the VNE increases, however, QFI decreases, so QFI and VNE have a monotonic connection with one another. As the value of the Kerr parameter is increased, the effect of non-linear Kerr doesn’t stay critical on both QFI and QE. However, a periodic response of QE is seen because of the atomic movement which becomes modest under natural impacts. Moreover, it has been seen that QFI and QE rot soon at the smaller values of the Stark parameter. However, as the value of the Stark parameter is increased, the QFI and QE show periodic response even when the atomic movement is absent.
机译:在本文中,我们提出了研究移动双层原子的量子缠结(QE)与由固有脱机(ID),KERR介质(非线性)和刺痛的相干和热场相互作用的量子缠结(QE)。影响。用相干和热场相互作用的完整系统的波函​​数计算由ID,KERR(非线性)和迹象效应数值影响。已经看出,在量子系统的时间演变期间,斯塔克,克尔,ID和热环境具有显着的效果。随着ID参数的值在没有原子运动的情况下,量子Fisher信息(QFI)和QE减小。可以看出,QFI和von Neumann熵(VNE)在存在原子运动的情况下表现出相反的和周期性的响应。由于KERR参数的值减小,非线性KERR介质对QE具有更突出和显着的影响。在非线性KERR参数的较小值下,VNE增加,然而,QFI降低,因此QFI和VNE彼此有单调连接。随着KERR参数的值增加,非线性KERR的效果在QFI和QE都不会保持关键。然而,由于在自然影响下变得适度的原子运动,因此可以看到QE的周期性响应。此外,已经看到QFI和QE在STARK参数的较小值下很快腐烂。然而,随着STARK参数的值增加,即使在不存在原子运动时,QFI和QE也显示出周期性的响应。

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