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Quantum coherence of the Heisenberg spin models with Dzyaloshinsky-Moriya interactions

机译:具有Dzyaloshinsky-Moriya相互作用的Heisenberg自旋模型的量子相干性

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摘要

We study quantum coherence in a spin chain with both symmetric exchange and antisymmetric Dzyaloshinsky-Moriya couplings. Quantum coherence is quantified using the recently introduced quantum Jensen-Shannon divergence, which has the property that it is easily calculable and has several desirable mathematical properties. We calculate exactly the coherence for arbitrary number of spins at zero temperature in various limiting cases. The σ z σ z interaction tunes the amount of coherence in the system, and the antisymmetric coupling changes the nature of the coherence. We also investigate the effect of non-zero temperature by looking at a two-spin system and find similar behavior, with temperature dampening the coherence. The characteristic behavior of coherence resembles that of entanglement and is opposite to that of discord. The distribution of the coherence on the spins is investigated and found that it arises entirely due to the correlations between the spins.
机译:我们研究自旋链中对称交换和反对称Dzyaloshinsky-Moriya耦合的量子相干性。量子相干性是使用最近引入的量子Jensen-Shannon发散来量化的,它具有易于计算的特性,并具有一些理想的数学特性。在各种极限情况下,我们可以精确地计算零温度下任意旋转次数的相干性。 σ z σ z 相互作用调节系统中的相干量,而反对称耦合改变了相干性。我们还研究了双自旋系统,研究了非零温度的影响,并发现了类似的行为,其中温度抑制了相干性。相干的特征行为类似于纠缠的行为,与不和谐的行为相反。研究了自旋上相干的分布,发现它的出现完全是由于自旋之间的相关性。

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