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首页> 外文期刊>Physical Review, A >Effective quantum Zeno dynamics in dissipative quantum systems
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Effective quantum Zeno dynamics in dissipative quantum systems

机译:耗散量子系统中有效量子ZENO动力学

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We investigate the time evolution of an open quantum system described by a Lindblad master equation with dissipation acting only on a part of the degrees of freedom H_0 of the system, and targeting a unique dark state in H_0. We show that, in the Zeno limit of large dissipation, the density matrix of the system traced over the dissipative subspace H_0, evolves according to another Lindblad dynamics, with renormalized effective Hamiltonian and weak effective dissipation. This behavior is explicitly checked in the case of Heisenberg spin chains with one or both boundary spins strongly coupled to a magnetic reservoir. Moreover, the populations of the eigenstates of the renormalized effective Hamiltonian evolve in time according to a classical Markov dynamics. As a direct application of this result, we propose a computationally efficient exact method to evaluate the nonequilibrium steady state of a general system in the limit of strong dissipation.
机译:我们研究了LINDBLAD主方程的开放量子系统的时间演变,仅在系统的自由度H_0的一部分上耗散作用,并瞄准H_0中的独特暗状态。 我们表明,在大耗散的ZENO限制中,系统的密度矩阵追踪在耗散子空间H_0上,根据另一个LINDBLAD动态演变,具有重整化有效的哈密顿和弱化耗散。 在Heisenberg旋转链的情况下,明确检查了这种行为,其中一个或两个边界旋转强烈地连接到磁力储存器。 此外,根据经典的马尔可夫动态,重整化有效的哈密顿人的特征持有的群体。 作为这种结果的直接应用,我们提出了一种计算有效的精确方法来评估一般系统的非QuiLibiBibirim稳定状态,以强度耗散的极限。

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