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Decay Process of Quantum Open System at Finite Temperatures
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作者 肖骁 高一波 《Communications in Theoretical Physics》 SCIE CAS CSCD 2012年第8期251-254,共4页
Starting from the formal solution to the Heisenberg equation, we revisit an universal model for a quantum open system with a harmonic oscillator linearly coupled to a boson bath. The analysis of the decay process for ... Starting from the formal solution to the Heisenberg equation, we revisit an universal model for a quantum open system with a harmonic oscillator linearly coupled to a boson bath. The analysis of the decay process for a Fock state and a coherent state demonstrate that this method is very useful in dealing with the problems in decay process of the open system. For finite temperatures, the calculations of the reduced density matrix and the mean excitation number for the open system show that an initiaJ coherent state will evolve into a temperature-dependant coherent state after tracing over the bath variables. Also in short-time limit, a temperature-dependant effective Hamiltonian for the open system characterizes the decay process of the open system. 展开更多
关键词 quantum open system decay process temperature-dependant effective Hamiltonian
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Pure State Feedback Switching Control Based on the Online Estimated State for Stochastic Open Quantum Systems
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作者 Shuang Cong Zhixiang Dong 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2024年第10期2166-2178,共13页
For the n-qubit stochastic open quantum systems,based on the Lyapunov stability theorem and LaSalle’s invariant set principle,a pure state switching control based on on-line estimated state feedback(short for OQST-SF... For the n-qubit stochastic open quantum systems,based on the Lyapunov stability theorem and LaSalle’s invariant set principle,a pure state switching control based on on-line estimated state feedback(short for OQST-SFC)is proposed to realize the state transition the pure state of the target state including eigenstate and superposition state.The proposed switching control consists of a constant control and a control law designed based on the Lyapunov method,in which the Lyapunov function is the state distance of the system.The constant control is used to drive the system state from an initial state to the convergence domain only containing the target state,and a Lyapunov-based control is used to make the state enter the convergence domain and then continue to converge to the target state.At the same time,the continuous weak measurement of quantum system and the quantum state tomography method based on the on-line alternating direction multiplier(QST-OADM)are used to obtain the system information and estimate the quantum state which is used as the input of the quantum system controller.Then,the pure state feedback switching control method based on the on-line estimated state feedback is realized in an n-qubit stochastic open quantum system.The complete derivation process of n-qubit QST-OADM algorithm is given;Through strict theoretical proof and analysis,the convergence conditions to ensure any initial state of the quantum system to converge the target pure state are given.The proposed control method is applied to a 2-qubit stochastic open quantum system for numerical simulation experiments.Four possible different position cases between the initial estimated state and that of the controlled system are studied and discussed,and the performances of the state transition under the corresponding cases are analyzed. 展开更多
关键词 Online state estimation state feedback control stochastic open quantum systems(OQST) switching control
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Einstein-Podolsky-Rosen Steering and Nonlocality in Open Quantum Systems
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作者 Abdelaziz Sabik 《Journal of Modern Physics》 2024年第4期462-473,共12页
We investigate the dynamical behavior of quantum steering (QS), Bell nonlocality, and entanglement in open quantum systems. We focus on a two-qubit system evolving within the framework of Kossakowski-type quantum dyna... We investigate the dynamical behavior of quantum steering (QS), Bell nonlocality, and entanglement in open quantum systems. We focus on a two-qubit system evolving within the framework of Kossakowski-type quantum dynamical semigroups. Our findings reveal that the measures of quantumness for the asymptotic states rely on the primary parameter of the quantum model. Furthermore, control over these measures can be achieved through a careful selection of these parameters. Our analysis encompasses various cases, including Bell states, Werner states, and Horodecki states, demonstrating that the asymptotic states can exhibit steering, entanglement, and Bell nonlocality. Additionally, we find that these three quantum measures of correlations can withstand the influence of the environment, maintaining their properties even over extended periods. 展开更多
关键词 quantum Steering Dynamical Semigroups Bell Nonlocality open quantum system Asymptotic Dynamics Entanglement
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Preparation of Hadamard Gate for Open Quantum Systems by the Lyapunov Control Method 被引量:2
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作者 Nourallah Ghaeminezhad Shuang Cong 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2018年第3期733-740,共8页
In this paper, the control laws based on the Lyapunov stability theorem are designed for a two-level open quantum system to prepare the Hadamard gate, which is an important basic gate for the quantum computers. First,... In this paper, the control laws based on the Lyapunov stability theorem are designed for a two-level open quantum system to prepare the Hadamard gate, which is an important basic gate for the quantum computers. First, the density matrix interested in quantum system is transferred to vector formation.Then, in order to obtain a controller with higher accuracy and faster convergence rate, a Lyapunov function based on the matrix logarithm function is designed. After that, a procedure for the controller design is derived based on the Lyapunov stability theorem. Finally, the numerical simulation experiments for an amplitude damping Markovian open quantum system are performed to prepare the desired quantum gate. The simulation results show that the preparation of Hadamard gate based on the proposed control laws can achieve the fidelity up to 0.9985 for the different coupling strengths. 展开更多
关键词 Lyapunov control method open quantum system operator preparation quantum Hadamard gate vector space dynamics
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Controlling of entropic uncertainty in open quantum system via proper placement of quantum register
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作者 Ying-Hua Ji Qiang Ke Ju-Ju Hu 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第10期159-167,共9页
We investigate the dynamical behaviors of quantum-memory-assisted entropic uncertainty and its lower bound in the amplitude-damping channel. The influences of different placement positions of the quantum register on t... We investigate the dynamical behaviors of quantum-memory-assisted entropic uncertainty and its lower bound in the amplitude-damping channel. The influences of different placement positions of the quantum register on the dynamics of quantum coherence, quantum entanglement, and quantum discord are analyzed in detail. The numerical simulation results show that the quantum register should be placed in the channel of the non-Markovian effect. This option is beneficial to reduce the entropic uncertainty and its lower bound. We also find that this choice does not change the evolution of the quantum coherence and quantum entanglement, but changes the dynamical process of the quantum discord of the system.These results show that quantum coherence, quantum entanglement, and quantum discord are different quantum resources with unique characteristics and properties, and quantum discord can play a key role in reducing the uncertainty of quantum systems. 展开更多
关键词 quantum-memory-assisted entropic uncertainties quantum register open quantum system
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Application of non-Hermitian Hamiltonian model in open quantum optical systems
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作者 Hong Wang Yue Qin +3 位作者 Jingxu Ma Heng Shen Ying Hu Xiaojun Jia 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第5期215-219,共5页
Non-Hermitian systems have observed numerous novel phenomena and might lead to various applications.Unlike standard quantum physics,the conservation of energy guaranteed by the closed system is broken in the non-Hermi... Non-Hermitian systems have observed numerous novel phenomena and might lead to various applications.Unlike standard quantum physics,the conservation of energy guaranteed by the closed system is broken in the non-Hermitian system,and the energy can be exchanged between the system and the environment.Here we present a scheme for simulating the dissipative phase transition with an open quantum optical system.The competition between the coherent interaction and dissipation leads to the second-order phase transition.Furthermore,the quantum correlation in terms of squeezing is studied around the critical point.Our work may provide a new route to explore the non-Hermitian quantum physics with feasible techniques in experiments. 展开更多
关键词 non-Hermitian Hamiltonian open quantum system optical parametric processing
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Fine-grained uncertainty relation for open quantum system
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作者 Shang-Bin Han Shuai-Jie Li +1 位作者 Jing-Jun Zhang Jun Feng 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第6期37-42,共6页
The fine-grained uncertainty relation (FUR) is investigated for accelerating open quantum system, which manifests the celebrated Unruh effect, a crucial piece of the jigsaw for combining relativity and quantum physics... The fine-grained uncertainty relation (FUR) is investigated for accelerating open quantum system, which manifests the celebrated Unruh effect, a crucial piece of the jigsaw for combining relativity and quantum physics. For a single detector, we show that the inevitable Unruh decoherence can induce a smaller FUR uncertainty bound, which indicates an additional measurement uncertainty may exist. For an open system combined with two detectors, via a nonlocal retrieval game, the related FUR uncertainty bound is determined by the non-classical correlation of the system. By estimating the maximal violation of Bell inequality for an accelerating system, we show that the FUR uncertainty bound can be protected from Unruh decoherence, due to quantum correlation generated through Markovian dynamics. 展开更多
关键词 open quantum system fine-grained uncertainty relation Unruh effect
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Optimal parameter estimation of open quantum systems
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作者 Yinghua Ji Qiang Ke Juju Hu 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第12期143-151,共9页
In quantum information technologies,quantum weak measurement is beneficial for protecting coherence of systems.In order to further improve the protection effect of quantum weak measurement on coherence,we propose an o... In quantum information technologies,quantum weak measurement is beneficial for protecting coherence of systems.In order to further improve the protection effect of quantum weak measurement on coherence,we propose an optimization scheme of quantum Fisher information(QFI)protection in an open quantum system by combing no-knowledge quantum feedback control with quantum weak measurement.On the basis of solving the dynamic equations of a stochastic two-level quantum system under feedback control,we compare the effects of different feedback Hamiltonians on QFI and find that via no-knowledge quantum feedback,the observation operatorσx(orσx andσz)can protect QFI for a long time.Namely,no-knowledge quantum feedback can improve the estimation precision of feedback coefficient as well as that of detection coefficient. 展开更多
关键词 no-knowledge quantum feedback real-time parameters estimation quantum Fisher information(QFI) open quantum system
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Quantum speed-up capacity in different types of quantum channels for two-qubit open systems
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作者 Wei Wu Xin Liu Chao Wang 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第6期145-150,共6页
A potential acceleration of a quantum open system is of fundamental interest in quantum computation, quantum communication, and quantum metrology. In this paper, we investigate the "quantum speed-up capacity" which ... A potential acceleration of a quantum open system is of fundamental interest in quantum computation, quantum communication, and quantum metrology. In this paper, we investigate the "quantum speed-up capacity" which reveals the potential ability of a quantum system to be accelerated. We explore the evolutions of the speed-up capacity in different quantum channels for two-qubit states. We find that although the dynamics of the capacity is varying in different kinds of channels, it is positive in most situations which are considered in the context except one case in the amplitude-damping channel. We give the reasons for the different features of the dynamics. Anyway, the speed-up capacity can be improved by the memory effect. We find two ways which may be used to control the capacity in an experiment: selecting an appropriate coefficient of an initial state or changing the memory degree of environments. 展开更多
关键词 quantum speed-up capacity quantum speed limit two-qubit open systems quantum channel memory effect
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A general simulation with trajectories in Heisenberg picture for quantum non-Markovian dynamics
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作者 Xinyu Chen Wenlin Li Chong Li 《Communications in Theoretical Physics》 2025年第7期45-53,共9页
We present a general numerical simulation method to solve non-Markovian dynamics of an open quantum system influenced by quantum Brownian motion.Based on the determined memory kernel function,this method enables the r... We present a general numerical simulation method to solve non-Markovian dynamics of an open quantum system influenced by quantum Brownian motion.Based on the determined memory kernel function,this method enables the resolution of non-Markovian dynamics for a wide range of system Hamiltonians and spectral densities.The system dynamics are described by exact integro-differential operator equations without any common approximations and they are simulated in this work by definite-number equations with stochastic initial conditions.This approach ensures the applicability of mature numerical methods and maintains computational complexity that remains largely invariant,even when dealing with more complex models.The high accuracy of our simulation is evident from a comparison with the results obtained from corresponding exact master equations,underscoring the reliability and precision of our method. 展开更多
关键词 non-markovian dynamics open quantum system stochastic simulation approach
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Robust Set Stabilization and Its Instances for Open Quantum Systems
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作者 Ming Zhang Zairong Xi Tzyh-Jong Tarn 《Chinese Physics Letters》 SCIE CAS CSCD 2018年第9期5-9,共5页
We propose and discuss a novel concept of robust set stabilization by permissible controls; this concept is helpful when dealing with both a priori information of model parameters and different permissible controls in... We propose and discuss a novel concept of robust set stabilization by permissible controls; this concept is helpful when dealing with both a priori information of model parameters and different permissible controls including quantum measurements. Both controllability and stabilization can be regarded as the special case of the novel concept. An instance is presented for a kind of uncertain open quantum systems to further justify this gen- eralized concept. It is underlined that a new type of hybrid control based on periodically perturbed projective measurements can be the permissible control of uncertain open quantum systems when perturbed projective measurements are available. The sufficient conditions are given for the robust set stabilization of uncertain quantum open systems by the hybrid control, and the design of the hybrid control is reduced to selecting the period of measurements. 展开更多
关键词 Robust Set Stabilization and Its Instances for open quantum systems
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Variational Quantum Algorithm for Solving the Liouvillian Gap
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作者 Xu-Dan Xie Zheng-Yuan Xue Dan-Bo Zhang 《Chinese Physics Letters》 2025年第8期121-128,共8页
In open quantum systems,the Liouvillian gap characterizes the relaxation time toward the steady state.However,accurately computing this quantity is notoriously difficult due to the exponential growth of the Hilbert sp... In open quantum systems,the Liouvillian gap characterizes the relaxation time toward the steady state.However,accurately computing this quantity is notoriously difficult due to the exponential growth of the Hilbert space and the non-Hermitian nature of the Liouvillian superoperator.In this work,we propose a variational quantum algorithm for efficiently estimating the Liouvillian gap.By utilizing the Choi-Jamio lkowski isomorphism,we reformulate the problem as finding the first excitation energy of an effective non-Hermitian Hamiltonian.Our method employs variance minimization with an orthogonality constraint to locate the first excited state and adopts a two-stage optimization scheme to enhance convergence.Moreover,to address scenarios with degenerate steady states,we introduce an iterative energy-offset scanning technique.Numerical simulations on the dissipative XXZ model confirm the accuracy and robustness of our algorithm across a range of system sizes and dissipation strengths.These results demonstrate the promise of variational quantum algorithms for simulating open quantum many-body systems on near-term quantum hardware. 展开更多
关键词 open quantum systems liouvillian gap relaxation time toward steady statehoweveraccurately hilbert space choi jamio lokia isomorphism finding first excitation energy variational quantum algorithm
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Quantum Teleportation with an Accelerated Partner in Open System
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作者 Maohuai Xiang Jiliang Jing 《Journal of Quantum Information Science》 2012年第4期103-111,共9页
We investigate the teleportation between two relatively accelerating partners undergoing the phase flip, bit flip and bit-phase flip channels. We find that: 1) the fidelity decreases by increasing the acceleration of ... We investigate the teleportation between two relatively accelerating partners undergoing the phase flip, bit flip and bit-phase flip channels. We find that: 1) the fidelity decreases by increasing the acceleration of accelerated observer;2) the dynamic evolution of the fidelity is different for various channels if the acceleration is fixed;and 3) the fidelity is always symmetric about β2=1/2 where βis a parameter of the transmission state. 展开更多
关键词 quantum TELEPORTATION Non-Inertial FRAMES open system
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Distribution of non-Markovian intervals for open qubit systems
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作者 郑艳萍 唐宁 +1 位作者 王国友 曾浩生 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第11期47-52,共6页
We study the non-Markovianity of open qubit systems using the measure N proposed by Breuer, Laine and Piilo [Phys. Rev. Lett. 103 210401 (2009)]. We find that for the three types of quantum noises, amplitude-damping... We study the non-Markovianity of open qubit systems using the measure N proposed by Breuer, Laine and Piilo [Phys. Rev. Lett. 103 210401 (2009)]. We find that for the three types of quantum noises, amplitude-damping, dephasing and depolarizing noises, there exist some non-Markovian time intervals whose distribution is independent of the selection of the pair of initial states. Therefore, the maximization in the definition of measure N can be actually removed without influencing the detection of non-Markovianity. 展开更多
关键词 open quantum system non-Markovianity non-Markovian interval
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Return Probability of the Open Quantum Random Walk with Time-Dependence
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作者 Clement Ampadu 《Communications in Theoretical Physics》 SCIE CAS CSCD 2013年第5期563-567,共5页
We study the open quantum random walk (OQRW) with time-dependence on the one-dimensional lattice space and obtain the associated limit distribution. As an application we study the return probability of the OQRW. We al... We study the open quantum random walk (OQRW) with time-dependence on the one-dimensional lattice space and obtain the associated limit distribution. As an application we study the return probability of the OQRW. We also ask, "What is the average time for the return probability of the OQRW?" 展开更多
关键词 open quantum random walk return probability limit theorem central limit theorem average time
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Averaging in SU(2) open quantum random walk
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作者 Clement Ampadu 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第3期109-111,共3页
We study the average position and the symmetry of the distribution in the SU(2) open quantum random walk (OQRW). We show that the average position in the central limit theorem (CLT) is non-uniform compared with ... We study the average position and the symmetry of the distribution in the SU(2) open quantum random walk (OQRW). We show that the average position in the central limit theorem (CLT) is non-uniform compared with the average position in the non-CLT. The symmetry of distribution is shown to be even in the CLT. 展开更多
关键词 open quantum random walk central limit theorem average position SU(2) operator
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环境噪声对双“引力猫态”系统量子速率极限时间与量子失协动力学的影响
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作者 代有成 韩伟 张英杰 《物理学报》 北大核心 2025年第4期38-45,共8页
在环境噪声影响下,考虑了一对分别被限制在双势阱中通过引力相互作用耦合的有质量粒子系统的量子态动力学行为.采用几何量子失协的方法,研究了稳定经典场与衰减场噪声对该有质量粒子系统量子态关联动力学的影响;用量子速率极限时间来描... 在环境噪声影响下,考虑了一对分别被限制在双势阱中通过引力相互作用耦合的有质量粒子系统的量子态动力学行为.采用几何量子失协的方法,研究了稳定经典场与衰减场噪声对该有质量粒子系统量子态关联动力学的影响;用量子速率极限时间来描述量子态演化加速的潜力,结果发现:改变系统与环境各项参数可以调控量子速率极限时间,实现有质量粒子系统量子态动力学演化的加速.增强两粒子间的引力耦合强度能加速量子态演化;衰减场的衰减率在一定程度上也能调节系统量子速率极限时间,从而达到加速量子态演化的目的.引力耦合强度会影响两粒子系统量子失协振荡的频率.值得注意的是,在衰减场噪声影响下,有质量粒子系统量子失协与量子速率极限时间相对应地表现出随时间的振荡行为,量子失协的增加对应着量子速率极限时间的减小,即系统量子失协的增加有利于量子态演化的加速. 展开更多
关键词 开放系统动力学 量子速率极限时间 量子失协 引力猫态
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非平衡各向异性Dicke模型中的量子热能输运
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作者 孔俊然 毛铓 +1 位作者 刘焕 王晨 《物理学报》 北大核心 2025年第21期113-121,共9页
量子光-物质相互作用系统的非平衡热能输运近来引起密切关注.本文研究非平衡各向异性Dicke模型中的量子热流及热整流行为.通过引入量子缀饰态主方程处理光子-量子比特强耦合.研究结果表明,各向异性光子-量子比特强耦合能有效调节热流.... 量子光-物质相互作用系统的非平衡热能输运近来引起密切关注.本文研究非平衡各向异性Dicke模型中的量子热流及热整流行为.通过引入量子缀饰态主方程处理光子-量子比特强耦合.研究结果表明,各向异性光子-量子比特强耦合能有效调节热流.量子比特数增多有利于增强热流.在热力学极限近似和极限各向异性系数下,得到热流的解析表达式.该热流解析式为有限尺寸各向异性Dicke模型的热流上限.较大的各向异性系数和光子-量子比特非弱耦合有助于实现显著的热整流效应.希望这些结果能够加深对各向异性光-物质相互作用系统中非平衡热能输运的理解. 展开更多
关键词 量子光-物质相互作用 量子输运 开放量子系统
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Quantum interferometric power and non-Markovianity in the decoherence channels
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作者 熊少杰 孙哲 王晓光 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第8期156-160,共5页
In quantum open systems,non-Markovianity is an important phenomenon that allows a backflow of information from the environment to the system.In this work,we investigate the non-Markovianity problems in two different t... In quantum open systems,non-Markovianity is an important phenomenon that allows a backflow of information from the environment to the system.In this work,we investigate the non-Markovianity problems in two different types of channels,where the system-environment interactions are treated with and without the rotating-wave approximation(RWA).We employ the quantum interferometric power(QIP)to quantify the non-Markovian dynamics,which is the minimal quantum Fisher information obtained by the local unitary evolution in a bipartite system.By the hierarchy equation method,we calculate the dynamical evolution of the QIP in the non-RWA case.The results show that the dynamical behavior under the non-RWA is significantly different from that under the RWA in both weak and strong coupling.Moreover,in the non-RWA case,we also find the nonmonotonic behavior of the non-Markovianity measure with the variation of coupling strength,which is caused by the competition between the rotating-wave terms and the counterrotating-wave terms.As a result,we highlight the importance of the counterrotating-wave terms for the influence of non-Markovianity. 展开更多
关键词 quantum open system auantum non-Markovianity auantum interferometric power
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Coherence revival under the Unruh effect and its metrological advantage
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作者 Jiafan Wang Jing-Jun Zhang Jun Feng 《Communications in Theoretical Physics》 2025年第6期59-66,共8页
In this paper,we investigate the quantum coherence extraction between two accelerating Unruh-DeWitt detectors,coupling to a scalar field in(3+1)-dimensional Minkowski spacetime.We find that quantum coherence as a nonc... In this paper,we investigate the quantum coherence extraction between two accelerating Unruh-DeWitt detectors,coupling to a scalar field in(3+1)-dimensional Minkowski spacetime.We find that quantum coherence as a nonclassical correlation can be generated through the Markovian evolution of the detector system,just like quantum entanglement.However,with growing Unruh temperature,in contrast to monotonously degrading entanglement,we find that quantum coherence exhibits a striking revival phenomenon.For certain detectors'initial state choices,the coherence measure will reduce to zero at first and then grow to an asymptotic value.We verify such coherence revival by inspecting its metrological advantage on the quantum Fisher information(QFI)enhancement.Since the maximal QFI bounds the accuracy of quantum parameter estimation,we conclude that the extracted coherence can be utilized as a physical resource in quantum metrology. 展开更多
关键词 open quantum system Unruh effect quantum coherence quantum Fisher information
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