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Quantum speed limit time of a non-Hermitian two-level system
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作者 Yan-Yi Wang Mao-Fa Fang 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第3期89-94,共6页
We investigated the quantum speed limit time of a non-Hermitian two-level system for which gain and loss of energy or amplitude are present. Our results show that, with respect to two distinguishable states of the non... We investigated the quantum speed limit time of a non-Hermitian two-level system for which gain and loss of energy or amplitude are present. Our results show that, with respect to two distinguishable states of the non-Hermitian system, the evolutionary time does not have a nonzero lower bound. The quantum evolution of the system can be effectively accelerated by adjusting the non-Hermitian parameter, as well as the quantum speed limit time can be arbitrarily small even be zero. 展开更多
关键词 quantum speed limit time NON-HERMITIAN dynamics quantum OPTICS
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Quantum speed limit time and entanglement in a non-Markovian evolution of spin qubits of coupled quantum dots 被引量:1
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作者 M.Bagheri Harouni 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第12期244-250,共7页
Quantum speed limit time and entanglement in a system composed of coupled quantum dots are investigated.The excess electron spin in each quantum dot constitutes the physical system(qubit).Also the spin interaction is ... Quantum speed limit time and entanglement in a system composed of coupled quantum dots are investigated.The excess electron spin in each quantum dot constitutes the physical system(qubit).Also the spin interaction is modeled through the Heisenberg model and the spins are imposed by an external magnetic field.Taking into account the spin relaxation as a non-Markovian process,the quantum speed limit and entanglement evolution are discussed.Our findings reveal that increasing the magnetic field leads to the faster quantum evolution.In addition,the temperature increment causes the longer quantum speed limit time as well as the entanglement degradation. 展开更多
关键词 quantum speed limit time quantum entanglement open quantum systems quantum dots
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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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Quantum speed limit time of a two-level atom under different quantum feedback control
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作者 余敏 方卯发 邹红梅 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第1期253-257,共5页
We investigate the quantum speed limit time (QSLT) of a two-level atom under quantum-jump-based feedback control or homodyne-based feedback control. Our results show that the two different feedback control schemes h... We investigate the quantum speed limit time (QSLT) of a two-level atom under quantum-jump-based feedback control or homodyne-based feedback control. Our results show that the two different feedback control schemes have different influences on the evolutionary speed. By adjusting the feedback parameters, the quantum-jump-based feedback control can induce speedup of the atomic evolution from an excited state, but the homodyne-based feedback control cannot change the evolutionary speed. Additionally, the QSLT for the whole dynamical process is explored. Under the quantum-jump-based feedback control, the QSLT displays oscillatory behaviors, which implies multiple speed-up and speed-down processes during the evolution. While, the homodyne-based feedback control can accelerate the speed-up process and improve the uniform speed in the uniform evolution process. 展开更多
关键词 quantum speed limit time quantum feedback control speedUP
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Quantum speed limits for Bell-diagonal states
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作者 韩伟 江克侠 +1 位作者 张英杰 夏云杰 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第12期222-227,共6页
The lower bounds of the evolution time between two distinguishable states of a system, defined as quantum speed limit time, can characterize the maximal speed of quantum computers and communication channels. We study ... The lower bounds of the evolution time between two distinguishable states of a system, defined as quantum speed limit time, can characterize the maximal speed of quantum computers and communication channels. We study the quantum speed limit time between the composite quantum states and their target states in the presence of nondissipative decoherence.For the initial states with maximally mixed marginals, we obtain the exact expressions of the quantum speed limit time which mainly depend on the parameters of the initial states and the decoherence channels. Furthermore, by calculating the quantum speed limit time for the time-dependent states started from a class of initial states, we discover that the quantum speed limit time gradually decreases in time, and the decay rate of the quantum speed limit time would show a sudden change at a certain critical time. Interestingly, at the same critical time, the composite system dynamics would exhibit a sudden transition from classical decoherence to quantum decoherence. 展开更多
关键词 quantum information quantum decoherence quantum speed limit time
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Influences of spin-orbit interaction on quantum speed limit and entanglement of spin qubits in coupled quantum dots
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作者 M Bagheri Harouni 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第9期94-100,共7页
Quantum speed limit and entanglement of a two-spin Heisenberg XYZ system in an inhomogeneous external magnetic field are investigated.The physical system studied is the excess electron spin in two adjacent quantum dot... Quantum speed limit and entanglement of a two-spin Heisenberg XYZ system in an inhomogeneous external magnetic field are investigated.The physical system studied is the excess electron spin in two adjacent quantum dots.The influences of magnetic field inhomogeneity as well as spin-orbit coupling are studied.Moreover,the spin interaction with surrounding magnetic environment is investigated as a non-Markovian process.The spin-orbit interaction provides two important features:the formation of entanglement when two qubits are initially in a separated state and the degradation and rebirth of the entanglement. 展开更多
关键词 quantum speed limit time quantum entanglement open quantum systems spin-orbit effects
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基于量子Bernoulli噪声的一维时空非齐次开放量子游荡 被引量:1
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作者 于媛媛 王才士 范楠 《吉林大学学报(理学版)》 CAS 北大核心 2024年第1期20-28,共9页
用量子Bernoulli噪声方法研究一维时空非齐次开放量子游荡,给出该游荡的演化性质以及极限概率分布,并表明以局部基态作为初始态时,基于量子Bernoulli噪声的一维时空非齐次开放量子游荡具有与经典随机游荡相同的极限概率分布.
关键词 量子Bernoulli噪声 开放量子游荡 时空非齐次 极限概率分布
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Non-Markovian speedup dynamics control of the damped Jaynes-Cummings model with detuning
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作者 徐凯 韩伟 +1 位作者 张英杰 范桁 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第1期247-252,共6页
For a two-level atom in a lossy cavity, a scheme to manipulate the non-Markovian speedup dynamics has been pro- posed in the controllable environment (the lossy cavity field). We mainly focus on the effects of the q... For a two-level atom in a lossy cavity, a scheme to manipulate the non-Markovian speedup dynamics has been pro- posed in the controllable environment (the lossy cavity field). We mainly focus on the effects of the qubit--cavity detuning A and the qubit-cavity coupling strength k on the non-Markovian speedup evolution of an open system. By controlling the environment, i.e., tuning zl and , two dynamical crossovers from Markovian to non-Markovian and from no-speedup to speedup are achieved. Furthermore, it is clearly found that increasing the coupling strength k or detuning A in some cases can make the environmental non-Markovianity stronger and hence can lead to faster evolution of the open system. 展开更多
关键词 non-Markovianity quantum speed limits open system dynamics
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Controlling Speedup Induced by a Hierarchical Environment
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作者 Jing Wang Yunan Wu Wenyu Ji 《Journal of Modern Physics》 2019年第10期1177-1189,共13页
Quantum speedup of an open quantum system can be induced by the non-Markovian effect of the environment. Although an environment with a higher degree of non-Markovianity may seem like it should cause a faster speed of... Quantum speedup of an open quantum system can be induced by the non-Markovian effect of the environment. Although an environment with a higher degree of non-Markovianity may seem like it should cause a faster speed of quantum evolution, this seemingly intuitive thinking may not always be correct. To clarify this point, we give a mechanism for controlling speedup of a single qubit that is coupled to a hierarchical photonic-crystal (PC) environment, which contains a defect single-mode cavity and a semi-infinite one-dimensional (1D) waveguide. Via studying the dynamics of the qubit, we reveal that with a judicious choice of the qubit-cavity coupling strength and the memory time of the waveguide environment, a speed-up evolution can be achieved. In particular, we found that the quantum speedup is not entirely attributed to the non-Markovianity, but to the increase of the total amount of flow information. That is the intrinsic physical reason that the hierarchical environment may induce the speed-up process. Our results may open new perspectives for detecting quantum speedup in realistic environments. 展开更多
关键词 Non-Markovianity quantum speed limit time PHOTONIC CRYSTAL
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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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纠缠相干光场对量子态最大演化速率的操控 被引量:4
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作者 田聪 鹿翔 +1 位作者 张英杰 夏云杰 《物理学报》 SCIE EI CAS CSCD 北大核心 2019年第15期178-186,共9页
考虑双模纠缠相干光场,将其中一束光场注入腔中与一个二能级原子发生共振相互作用,根据腔量子电动力学理论推导出原子系统的演化态.针对原子系统初始状态到目标演化态的动力学过程,利用量子速率极限时间概念来表征原子系统量子态的最大... 考虑双模纠缠相干光场,将其中一束光场注入腔中与一个二能级原子发生共振相互作用,根据腔量子电动力学理论推导出原子系统的演化态.针对原子系统初始状态到目标演化态的动力学过程,利用量子速率极限时间概念来表征原子系统量子态的最大演化速率.通过调节双模纠缠相干光场的相干参数来操控原子系统量子态动力学过程中所能达到的最大演化速率.结果发现:与原子发生相互作用光场的相干参数在一定条件下可以对系统量子态的最大演化速率产生明显的影响;并且当该光场参数不能很好地来操控量子态的最大演化速率时,双模纠缠相干光场间的量子关联可以实现未参加相互作用光场参数对原子系统量子态最大演化速率的远程调控. 展开更多
关键词 量子速率极限 纠缠相干态 二能级原子
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汽轮发电机组OPC控制策略的分析及优化 被引量:1
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作者 廖堃 封颖 +1 位作者 李兴源 徐娇 《四川电力技术》 2010年第2期1-6,69,共7页
现代化大型机组采用数字电液控制(DEH),普遍具有电超速保护控制系统(OPC),其中一个很重要的方面是防止汽轮机超速。但如果OPC的控制策略不当,不仅起不到应有的超速保护作用,而且造成汽门频繁启闭,产生"乒乓"现象。通过对OPC... 现代化大型机组采用数字电液控制(DEH),普遍具有电超速保护控制系统(OPC),其中一个很重要的方面是防止汽轮机超速。但如果OPC的控制策略不当,不仅起不到应有的超速保护作用,而且造成汽门频繁启闭,产生"乒乓"现象。通过对OPC振荡机理的分析,发现在电网侧发生扰动时,OPC的控制参数不合理及与其他保护措施不配合是引起系统振荡的根本原因。对OPC的动作时限及阀门开度提出相应的修改,针对2006年7月7日贵阳南部电网事故,根据实际系统,用NETOMAC程序建立了原动机、调速器和汽轮发电机过速保护的详细模型,根据理论分析的结果提出了3种OPC的动作方案并仿真证明了分析结果的正确性。最后提出相应的改进建议。 展开更多
关键词 超速保护(OPC) 动作时限 阀门开度 调速器 频率稳定
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量子速率极限时间
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作者 徐凯 张国锋 《大学物理》 2021年第10期1-4,共4页
系统从初始态演化到目标态所需要的最短时间被定义为量子速率极限时间.此概念可以被用来估量由给定量子态到期望目标态的最大演化速率.本文主要回顾了从封闭系统量子速率极限时间过渡到开放系统量子速率极限时间的发展历程,并讨论了非... 系统从初始态演化到目标态所需要的最短时间被定义为量子速率极限时间.此概念可以被用来估量由给定量子态到期望目标态的最大演化速率.本文主要回顾了从封闭系统量子速率极限时间过渡到开放系统量子速率极限时间的发展历程,并讨论了非马尔科夫环境对开放系统量子速率极限时间的影响.希望能对今后量子速率极限时间的发展有所帮助. 展开更多
关键词 封闭系统量子速率极限时间 开放系统量子速率极限时间 量子信息
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系统动力学演化中量子加速的研究
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作者 闫丽 《量子电子学报》 CAS CSCD 北大核心 2021年第3期327-331,共5页
在一个二能级原子与单模腔场相互作用的系统中,基于归一化条件获得原子的密度矩阵及原子处于激发态的布居数,给出了系统演化的量子加速公式。采用纵向加速和横向加速来描述系统动力学演化的过程,利用数值计算的方法讨论了原子与腔场的... 在一个二能级原子与单模腔场相互作用的系统中,基于归一化条件获得原子的密度矩阵及原子处于激发态的布居数,给出了系统演化的量子加速公式。采用纵向加速和横向加速来描述系统动力学演化的过程,利用数值计算的方法讨论了原子与腔场的耦合强度和演化时间对系统演化加速的影响。研究结果表明腔与原子的耦合能够加速量子态的纵向演化;随着演化时间的增加,量子态的横向加速增强,并伴随着周期性振荡。 展开更多
关键词 量子光学 动力学演化 量子加速 量子速度极限时间
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狭义相对论的前提与全速域狭义相对论理论模型的构建原则
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作者 任晓敏 《北京邮电大学学报》 EI CAS CSCD 北大核心 2015年第3期13-27,共15页
基于笔者提出的弥聚子论的基本概念及其中对于主要反映超高速领域物质运动与时空之间关系的爱因斯坦狭义相对论(或称"高速狭义相对论")的尝试性拓展——预言了有可能显著存在于超低速领域的低速狭义相对论效应乃至有可能显著... 基于笔者提出的弥聚子论的基本概念及其中对于主要反映超高速领域物质运动与时空之间关系的爱因斯坦狭义相对论(或称"高速狭义相对论")的尝试性拓展——预言了有可能显著存在于超低速领域的低速狭义相对论效应乃至有可能显著存在于超高速和超低速领域、同时涉及介于两者之间的常速领域的全速域狭义相对论效应,对爱因斯坦狭义相对论的前提进行了评述、质疑与修正,其要点包括:第一,指出了爱因斯坦在"以狭义相对性原理为前提"的名义下所做推导的前提超出了纯粹意义上的狭义相对性原理,它实际上隐含了独立且具有潜在局限性的"伽利略极限契合原理"和"线性时空变换假设";第二,指出了依据对电磁波运动的考察和狭义相对性原理而得出的光速不变原理在其意义和作用方面存在一定的局限性,而通过对实物体运动的考察则有可能获得等价于光速不变原理或较之更具普遍意义的能够作为狭义相对论前提的原理,从而有可能更深刻、更充分地反映狭义相对论效应的物理本质乃至引发狭义相对论的变革;第三,区分了光速不变原理与"固有常数光速个例性原理",指出了狭义相对性原理不仅寓于相关时空变换表达式的高度对称性之中,还必寓于其他与物理过程相关的原理之中;第四,依据前期研究成果对狭义相对论的前提进行了更新,即扬弃了光速不变原理并代之以先前提出的实物体运动存在速度上限和下限的"双极限速原理"及与之孪生的"双极限速质量-速度关联原理",并指出了在笔者所期待的狭义相对论的变革中恰当运用"伽利略极限契合原理"或将其推广为"洛仑兹极限契合原理"乃至推广为扬弃具体极限情形的"一般性极限契合原理"以及放弃"线性时空变换假设"转而依循"时空变换数学形式的开放性原则"的必要性.在此基础上,通过在上限速单极近似下引入质量-速度关联原理,重新推导出了爱因斯坦狭义相对论中的洛仑兹变换关系式,明确了以质量-速度关联原理取代光速不变原理的推演步骤,并使得"光速不变"(或"上限速度不变")在爱因斯坦狭义相对论中由前提蜕变为推论.继之,分别给出了上限速单极近似和下限速单极近似下质量-速度关系的唯象推导过程,并明确了低速狭义相对论和全速域狭义相对论时空变换关系式的构建原则.这一工作使得全速域狭义相对论完备理论模型的建立又向前推进了一步. 展开更多
关键词 弥聚子论 狭义相对论 低速狭义相对论 全速域狭义相对论 狭义相对性原理 光速不变原理 固有常数光速个例性原理 双极限速原理 上限速单极近似 下限速单极近似 质量-速度关联原理 时空变换 伽利略变换 洛仑兹变换 伽利略极限契合原理 洛仑兹极限契合原理 一般性极限契合原理 线性时空变换假设 时空变换数学形式的开放性原则
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