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Scalable neutral atom quantum computer with interaction on demand: Proposal for selective application of two-qubit gate

机译:可按需交互的可扩展中性原子量子计算机:关于选择性应用二量子位门的建议

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摘要

We propose a scalable neutral atom quantum computer with an on-demand interaction through a selective two-qubit gate operation. Atoms are trapped by a lattice of near field Fresnel diffraction lights so that each trap captures a single atom. One-qubit gate operation is implemented by a gate control laser beam which is applied to an individual atom. Two-qubit gate operation between an arbitrary pair of atoms is implemented by sending these atoms to a statedependent optical lattice and making them collide so that a particular two-qubit state acquires a dynamical phase. We give numerical evaluations corresponding to these processes, from which we estimate the upper bound of a two-qubit gate operation time and corresponding gate fidelity. Our proposal is feasible within currently available technology developed in cold atom gas, MEMS, nanolithography, and various areas in optics.
机译:我们提出了一种具有可伸缩性的中性原子量子计算机,该计算机具有通过选择性二量子位门运算进行按需交互的功能。原子被近场菲涅耳衍射光的晶格捕获,因此每个陷阱都捕获一个原子。通过施加到单个原子的栅极控制激光束可实现单比特栅极操作。通过将这些原子发送到与状态相关的光学晶格并使它们发生碰撞,从而实现特定的两量子位态获得动态相位,从而实现任意一对原子之间的两量子位门操作。我们给出了与这些过程相对应的数值评估,据此我们可以估算出两个量子位的门操作时间的上限和相应的门保真度。我们的建议在冷原子气体,MEMS,纳米光刻和光学各个领域中开发的当前可用技术中是可行的。

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