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Quantum coherence of spin-boson model at finite temperature

机译:有限温度旋转玻体模型的量子相干性

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We investigate the dynamical behavior of quantum coherence in spin-boson model, which consists of a qubit coupled to a finite temperature bosonic bath with power-law spectral density beyond rotating wave approximation, by employing 11-norm as well as quantum relative entropy. It is shown that the temperature of bosonic bath and counter-rotating terms significantly affect the decoherence rate in sub-Ohmic, Ohmic and super-Ohmic baths. At high temperature, we find the counter-rotating terms of spin-boson model are able to increase the decoherence rate for sub Ohmic baths, however, for Ohmic and super-Ohmic baths, the counter-rotating terms tend to decrease the value of decoherence rate. At low temperature, we find the counter-rotating terms always play a positive role in preserving the qubit's quantum coherence regardless of sub-Ohmic, Ohmic and super-Ohmic baths. (C) 2017 Elsevier Inc. All rights reserved.
机译:我们研究了旋转玻色子模型中量子相干性的动态行为,其包括通过采用11-NARM以及量子相对熵而耦合到具有超出旋转波近似的有限温度振荡密度的Qubit。 结果表明,挥霍浴和反向旋转术语的温度显着影响亚欧姆,欧姆和超级欧姆浴中的脱机速率。 在高温下,我们发现旋转玻色子模型的反向旋转术语能够增加亚欧姆浴的脱渗速率,然而,对于欧姆和超级欧姆浴,反向旋转术语往往会降低变形的值 速度。 在低温下,我们发现反向旋转术语总是在保留Qubit的量子相干方面发挥积极作用,而不管亚欧姆,欧姆和超级欧姆浴。 (c)2017年Elsevier Inc.保留所有权利。

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