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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 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 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 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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Controlled decoherence of three-level rf-SQUID qubit with asymmetric potential
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作者 嵇英华 赖慧芳 +1 位作者 蔡十华 王资生 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第3期61-65,共5页
A scheme is proposed to controll the decoherence of three-level rf-SQUID qubit with asymmetric potential by designing an external electric circuit for superconductive flux qubit. The results show that it may not only ... A scheme is proposed to controll the decoherence of three-level rf-SQUID qubit with asymmetric potential by designing an external electric circuit for superconductive flux qubit. The results show that it may not only raise the gate speed but also extend decoherence time for a three-level structure. 展开更多
关键词 gate speed quantum NOT gates decoherence time controll
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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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