Rydberg atoms and quantum information

I. Ryabtsev, I. Beterov, D. Tretyakov, E. Yakshina, V. Entin, C. Andreeva
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Abstract

We present a brief overview of the current state of the experimental research on the development of the element base of quantum computers with qubits based on single neutral atoms trapped in optical traps. The discussion focuses on the requirements for qubits, peculiarities of single neutral atoms as qubits, methods for the quantum register development and for the implementation of single-qubit quantum logic operations in the laser and microwave fields, and two-qubit operations through the dipole–dipole interaction after a short laser excitation of atoms to the Rydberg states. The results of the experiments on the observation of the interaction of two and three Rydberg atoms by a Förster resonance controlled by dc and radio-frequency electric field are presented.
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里德伯原子和量子信息
本文简要介绍了基于单中性原子捕获光阱的量子比特开发量子计算机元素基的实验研究现状。讨论的重点是对量子比特的要求,单个中性原子作为量子比特的特性,量子寄存器开发和在激光和微波场中实现单量子比特量子逻辑运算的方法,以及在短激光激发原子到里德伯态后通过偶极子-偶极子相互作用进行的双量子比特运算。本文介绍了在直流电场和射频电场控制下,用Förster共振观察两个里德伯原子和三个里德伯原子相互作用的实验结果。
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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