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首页> 外文期刊>International Journal of Quantum Information >ENGINEERING LONG RANGE DISTANCE INDEPENDENT ENTANGLEMENT VIA LOCAL MANIPULATION OF A KONDO SPIN CHAIN
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ENGINEERING LONG RANGE DISTANCE INDEPENDENT ENTANGLEMENT VIA LOCAL MANIPULATION OF A KONDO SPIN CHAIN

机译:通过对KONDO自旋链的本地操作来实现工程长距离独立纠缠

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摘要

We exploit the unique 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 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.
机译:我们利用无间隙近藤政权中纠缠的独特特征,表明在近藤自旋链一端的单个局部猝灭可能总是诱发快速和长寿命的振荡动力学,从而在高品质的各个自旋之间建立了高质量的纠缠。链的相反两端。这种纠缠是近藤云存在的足迹,可以进行工程设计,以便即使对于非常大的链,也可以获得与长度无关的恒定高值。此外,它具有耐热性。为了更好地证明近藤政权的显着特点,我们对空缺二聚态中近藤自旋链模型的纠缠特性进行了并行分析,在这些情况下,这些显着特征不存在。

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