自旋链中近藤杂质的工程长距离独立纠缠

A. Bayat, Pasquale Sodano, S. Bose
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引用次数: 1

摘要

我们研究了近藤自旋链在基态制备时的纠缠特性以及单键猝灭后的动力学。我们证明了纠缠的真实度量,如负性,能够表征无间隙近藤政权的独特特征。我们确定了近藤筛选云的空间范围,并提出了近藤体系中可进入该自旋链的基态的分析;我们还证明了杂质自旋确实最大程度地与近藤云纠缠在一起。我们利用无间隙近藤体系中纠缠的这些特征,证明了近藤自旋链一端的单一局部猝灭可能总是会诱发一个快速而长寿命的振荡动力学,从而在链两端的单个自旋之间建立了高质量的纠缠。这种缠结是近藤云存在的痕迹,可以通过设计来获得——即使是非常大的链——一个与长度无关的恒定的高值;此外,它是热稳健的。为了更好地证明近藤体系的显著特性,我们对不存在这些显著特征的间隙二聚化体系中近藤自旋链模型的纠缠特性进行了平行分析。
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Engineering Long Range Distance Independent Entanglement through Kondo Impurities in Spin Chains
We investigate the entanglement properties of the Kondo spin chain when it is prepared in its ground state as well as its dynamics following a single bond quench. We show that a true measure of entanglement such as negativity enables to characterize the unique features of the gapless Kondo regime. We determine the spatial extent of the Kondo screening cloud and propose an ansatz for the ground state in the Kondo regime accessible to this spin chain; we also demonstrate that the impurity spin is indeed maximally entangled with the Kondo cloud. We exploit these features of the entanglement in the gapless Kondo regime to show that a single local quench at one end of a Kondo spin chain may always induce a fast and long lived oscillatory dynamics, which establishes a high quality entanglement between the individual spins at the opposite ends of the chain. This entanglement is a footprint of the presence of the Kondo cloud and may be engineered so as to attain - even for very large chains- a constant high value independent of the length; in addition, it is thermally robust. To better evidence the remarkable peculiarities of the Kondo regime, we carry a parallel analysis of the entanglement properties of the Kondo spin chain model in the gapped dimerised regime where these remarkable features are absent.
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