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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Measurement based controlled not gate for topological qubits in a Majorana fermion and quantum-dot hybrid system
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Measurement based controlled not gate for topological qubits in a Majorana fermion and quantum-dot hybrid system

机译:马里亚纳费米子与量子点混合系统中基于量测的拓扑量子位的受控非门

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摘要

We propose a scheme to implement controlled not gate for topological qubits in a quantum-dot and Majorana fermion hybrid system. Quantum information is encoded on pairs of Majorana fermions, which live on the the interface between topologically trivial and nontrivial sections of a quantum nanowire deposited on an s-wave superconductor. A measurement based two-qubit controlled not gate is produced with the help of parity measurements assisted by the quantum-dot and followed by prescribed single-qubit gates. The parity measurement, on the quantum-dot and a topological qubit, is achieved by the Aharonov-Casher effect.
机译:我们提出了一种在量子点和马里亚纳费米子混合系统中对拓扑量子位实施受控非门的方案。量子信息被编码在成对的马里亚纳费米子上,这些费米子生活在沉积在s波超导体上的量子纳米线的拓扑琐碎部分和非琐碎部分之间的界面上。借助量子点辅助的奇偶校验测量,然后是规定的单量子比特门,可以产生基于测量的两比特控制非门。量子点和拓扑量子位上的奇偶性测量是通过Aharonov-Casher效应实现的。

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