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Garfinkle-Horowitz-Strominger黑洞视界附近qubit-qutrit系统量子Fisher信息的保护 被引量:1
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作者 廉熠鋆 刘金明 《华东师范大学学报(自然科学版)》 CAS CSCD 北大核心 2022年第4期120-130,共11页
以Garfinkle-Horowitz-Strominger(GHS)膨胀黑洞附近的qubit粒子和渐进平行时空下的qutrit粒子所组成的qubit-qutrit系统为研究对象,讨论了该系统的量子Fisher信息(Quantum Fisher Information,QFI)在噪声环境下的动力学行为,并基于弱... 以Garfinkle-Horowitz-Strominger(GHS)膨胀黑洞附近的qubit粒子和渐进平行时空下的qutrit粒子所组成的qubit-qutrit系统为研究对象,讨论了该系统的量子Fisher信息(Quantum Fisher Information,QFI)在噪声环境下的动力学行为,并基于弱测量和测量反转操作提出了噪声通道影响下量子Fisher信息的保护方案.结果表明,对于振幅阻尼通道,量子Fisher信息随着退相干强度的增加呈现单调递减的趋势;然而对于相位阻尼通道,量子Fisher信息却几乎不发生改变.此外,通过选取合适的弱测量强度和测量反转强度,实现了振幅阻尼信道中量子Fisher信息的保护,其量子Fisher信息可得到显著增强. 展开更多
关键词 量子fisher信息 Garfinkle-Horowitz-Strominger膨胀黑洞时空 量子弱测量
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Squeezing Effects on the Estimation Precision of Cut off Frequency
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作者 Asghar Ullah Khalid Khan 《Journal of Quantum Information Science》 2021年第1期13-23,共11页
We study the behavior of quantum Fisher information for a qubit probe that is interacting with a squeezed thermal environment. We analyzed the effect of squeezing parameters on the dynamics of quantum Fisher informati... We study the behavior of quantum Fisher information for a qubit probe that is interacting with a squeezed thermal environment. We analyzed the effect of squeezing parameters on the dynamics of quantum Fisher information which affects the optimal precision of the estimation parameter. We show that the squeezed field may offer a significant role in the precise measurement of the parameter cut-off frequency which is linked to the environment correlation time. Our results may be useful in quantum metrology, communication, and quantum estimation processes. 展开更多
关键词 quantum fisher information (qfi) Squeezed Thermal Environment Qubit Probe Cut off Frequency
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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
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作者 S. Jamal Anwar M. Ramzan +1 位作者 M. Usman M. Khalid Khan 《Journal of Quantum Information Science》 2021年第1期24-41,共18页
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), Ke... 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. 展开更多
关键词 quantum fisher information (qfi) Intrinsic Decoherence (ID) Thermal Environment Two-Level Atomic System Kerr and Stark Effect
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