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通过交叉的Tomonaga-Luttinger液体中的自旋-电荷分离检测自旋纠缠

Detection of spin entanglement via spin-charge separation in crossed Tomonaga-Luttinger liquids.

作者信息

Schroer Alexander, Braunecker Bernd, Levy Yeyati Alfredo, Recher Patrik

机构信息

Institut für Mathematische Physik, Technische Universität Braunschweig, D-38106 Braunschweig, Germany.

Scottish Universities Physics Alliance, School of Physics and Astronomy, University of St Andrews, North Haugh, St Andrews KY16 9SS, United Kingdom.

出版信息

Phys Rev Lett. 2014 Dec 31;113(26):266401. doi: 10.1103/PhysRevLett.113.266401. Epub 2014 Dec 23.

Abstract

We investigate tunneling between two spinful Tomonaga-Luttinger liquids (TLLs) realized, e.g., as two crossed nanowires or quantum Hall edge states. When injecting into each TLL one electron of opposite spin, the dc current measured after the crossing differs for singlet, triplet, or product states. This is a striking new non-Fermi liquid feature because the (mean) current in a noninteracting beam splitter is insensitive to spin entanglement. It can be understood in terms of collective excitations subject to spin-charge separation. This behavior may offer an easier alternative to traditional entanglement detection schemes based on current noise, which we show to be suppressed by the interactions.

摘要

我们研究了在例如由两条交叉纳米线或量子霍尔边缘态实现的两个有自旋的托马纳加 - 卢廷格液体(TLLs)之间的隧穿。当向每个TLL注入一个自旋相反的电子时,交叉后测量的直流电流对于单重态、三重态或乘积态是不同的。这是一个引人注目的新的非费米液体特征,因为在非相互作用的分束器中(平均)电流对自旋纠缠不敏感。它可以根据受自旋 - 电荷分离影响的集体激发来理解。这种行为可能为基于电流噪声的传统纠缠检测方案提供一种更简便的替代方法,我们表明这种传统方案会受到相互作用的抑制。

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