里德堡原子
量子计算机
里德伯公式
计算
物理
量子位元
架空(工程)
Atom(片上系统)
拓扑(电路)
量子
序列(生物学)
计算机科学
量子电路
量子力学
量子纠错
算法
数学
并行计算
化学
离子
电离
组合数学
操作系统
生物化学
作者
Francesco Cesa,Hannes Pichler
标识
DOI:10.1103/physrevlett.131.170601
摘要
We develop a model for quantum computation with Rydberg atom arrays, which only relies on global driving, without the need of local addressing of the qubits: any circuit is executed by a sequence of global, resonant laser pulses on a static atomic arrangement. We present two constructions: for the first, the circuit is imprinted in the trap positions of the atoms and executed by the pulses; for the second, the atom arrangement is circuit-independent, and the algorithm is entirely encoded in the global driving sequence. Our results show in particular that a quadratic overhead in atom number is sufficient to eliminate the need for local control to realize a universal quantum processor. We give explicit protocols for all steps of an arbitrary quantum computation, and discuss strategies for error suppression specific to our model. Our scheme is based on dual-species processors with atoms subjected to Rydberg blockade constraints, but it might be transposed to other setups as well.
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