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Decoherence in strongly coupled quantum oscillators

机译:强耦合量子振荡器中的退相干

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In this paper, we present a comprehensive analysis of the coherence phenomenon of two coupled dissipative oscillators. The action of a classical driving field on one of the oscillators is also analyzed. Master equations are derived for both regimes of weakly and strongly interacting oscillators from which interesting results arise concerning the coherence properties of the joint and the reduced system states. The strong coupling regime is required to achieve a large frequency shift of the oscillator normal modes, making it possible to explore the whole profile of the spectral density of the reservoirs. We show how the decoherence process may be controlled by shifting the normal mode frequencies to regions of small spectral density of the reservoirs. Different spectral densities of the reservoirs are considered and their effects on the decoherence process are analyzed. For oscillators with different damping rates, we show that the worse-quality system is improved and vice versa, a result which could be useful for quantum state protection. State recurrence and swap dynamics are analyzed as well as their roles in delaying the decoherence process. (c) 2005 Elsevier Inc. All rights reserved.
机译:在本文中,我们对两个耦合耗散振荡器的相干现象进行了全面分析。还分析了经典驱动场在一个振荡器上的作用。对于弱相互作用和强相互作用的振荡器,都可以得出主方程,从中可以得出有关接头和简化系统状态的相干特性的有趣结果。需要强大的耦合机制来实现振荡器正常模式的大频移,从而有可能探索储层频谱密度的整个分布。我们展示了如何通过将正常模式频率转移到储层光谱密度小的区域来控制去相干过程。考虑了储层的不同光谱密度,并分析了它们对退相干过程的影响。对于具有不同阻尼率的振荡器,我们证明了质量较差的系统得到了改善,反之亦然,这对于量子态保护很有用。分析了状态重复和交换动态,以及它们在延迟去相干过程中的作用。 (c)2005 Elsevier Inc.保留所有权利。

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