Beyond Energy: Teleporting Current, Charge, and More

Kazuki Ikeda
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Abstract

As an homage to Quantum Energy Teleportation, we generalize the idea to arbitrary physical observables, not limited to energy, and prove a rigorous upper bound on the activated ("teleported") quantity. The essence of this protocol is a quantum feedback control with respect to the entangled ground state of a quantum many-body system. To demonstrate the concept, we explore a (1+1)-dimensional chiral Dirac system and execute the protocol for the electric current and charge. One of the most significant results is the creation of long-range correlations across the system after applying control operations only to one local site. Consequently but surprisingly, the induced charge susceptibility fully reconstructs the phase diagram, despite the model initially having no charge. Moreover, we find an activation of novel chiral dynamics induced by feedback control operations, which can be experimentally confirmed using trapped ions and neutral atoms.
超越能量:瞬移电流、电荷等
为了向量子能量远距传输致敬,我们将这一想法推广到任意物理观测量上,而不仅限于能量,并证明了激活("远距传输")量的严格上界。该协议的本质是对量子多体系统纠缠基态的量子反馈控制。为了证明这一概念,我们探索了一个(1+1)维手性狄拉克系统,并对电流和电荷执行了协议。其中最重要的结果之一是,只在一个局部位置进行控制操作后,整个系统产生了长程相关性。令人惊讶的是,尽管模型最初没有电荷,但诱导电荷感受性完全重建了相图。此外,我们还发现反馈控制操作诱导激活了新的啁啾动力学,这一点可以通过使用被困离子和中性原子得到实验证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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