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Synthetic Topological Qubits in Conventional Bilayer Quantum Hall Systems

机译:常规双层量子霍尔系统中的合成拓扑量子位

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摘要

The idea of topological quantum computation is to build powerful and robust quantum computers with certain macroscopic quantum states of matter called topologically ordered states. These systems have degenerate ground states that can be used as robust “topological qubits” to store and process quantum information. In this paper, we propose a new experimental setup that can realize topological qubits in a simple bilayer fractional quantum Hall system with proper electric gate configurations. Our proposal is accessible with current experimental techniques, involves well-established topological states, and, moreover, can realize a large class of topological qubits, generalizing the Majorana zero modes studied in recent literature to more computationally powerful possibilities. We propose three tunneling and interferometry experiments to detect the existence and nonlocal topological properties of the topological qubits.
机译:拓扑量子计算的思想是使用某些称为拓扑有序状态的物质的宏观量子状态来构建强大而强大的量子计算机。这些系统具有退化的基态,可以用作健壮的“拓扑量子位”来存储和处理量子信息。在本文中,我们提出了一种新的实验装置,该装置可以在具有适当电门配置的简单双层分数量子霍尔系统中实现拓扑量子位。我们的建议可以使用当前的实验技术来访问,涉及成熟的拓扑状态,并且可以实现一大类拓扑量子位,将最近文献中研究的Majorana零模式推广到计算能力更强的可能性。我们提出了三个隧穿和干涉测量实验,以检测拓扑量子位的存在和非局部拓扑特性。

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