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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Quantum dissonance induced by a thermal field and its dynamics in dissipative systems
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Quantum dissonance induced by a thermal field and its dynamics in dissipative systems

机译:热场引起的量子共振及其在耗散系统中的动力学

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In this paper, we study quantum correlation in separable systems termed quantum dissonance [K. Modi, T. Paterek, W. Son, V. Vedral, M. Williamson, Phys. Rev. Lett. 104, 080501 (2010)]. Firstly, we study the emergence of quantum dissonance between two atoms prepared in uncorrelated states and coupled to a single-mode thermal field. We show that even for situations when the thermal field cannot entangle the two atoms, it can nevertheless induce quantum dissonance between them. Then, we investigate the dynamics including the transfer in both Markovian and non-Markovian regimes of quantum dissonance due to dissipation modeled by two independent subsystems each of which consists of a leaky cavity containing a two-level atom and surrounded by a reservoir. The two subsystems possess some amount of atomic quantum dissonance at the beginning but do not interact with each other by any means later on. We show that the quantum dissonance can be transferred among the composite subsystems, but the way it evolves and is transferred may be very different compared to that of entanglement. Finally, we present an efficient method to refrain the unwanted transfer of quantum dissonance from interested systems to reservoirs.
机译:在本文中,我们研究了可分离系统中的量子相关性,称为量子失谐[K。 Modi,T。Paterek,W.Son,V.Vedral,M.Williamson,物理学牧师104,080501(2010)]。首先,我们研究了以不相关态制备并耦合到单模热场的两个原子之间的量子失谐的出现。我们表明,即使在热场无法纠缠两个原子的情况下,它仍然可以引起它们之间的量子失谐。然后,我们研究了动力学,包括由于两个独立子系统建模的耗散而导致的量子共振在马氏和非马氏体系中的转移,两个子系统分别由包含两级原子且由储层包围的泄漏腔组成。这两个子系统在开始时具有一定数量的原子量子失谐,但以后不会通过任何方式相互影响。我们证明了量子共振可以在复合子系统之间传递,但是它的演化和传递方式与纠缠相比可能有很大不同。最后,我们提出了一种有效的方法来抑制不必要的量子共振从感兴趣的系统转移到储层。

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