量子行走
随机游动
实现(概率)
离子
统计物理学
量子
量子态
物理
概率分布
量子力学
囚禁离子量子计算机
国家(计算机科学)
自动回避步行
量子算法
量子计算机
量子模拟器
数学
算法
统计
作者
F. Zähringer,Gerhard Kirchmair,R. Gerritsma,E. Solano,R. Blatt,C. F. Roos
标识
DOI:10.1103/physrevlett.104.100503
摘要
We experimentally demonstrate a quantum walk on a line in phase space using one and two trapped ion. A walk with up to 23 steps is realized by subjecting an ion to state-dependent displacement operations interleaved with quantum coin tossing operations. To analyze the ion's motional state after each step we apply a technique that directly maps the probability density distribution onto the ion's internal state. The measured probability distributions and the position's second moment clearly show the non-classical character of the quantum walk. To further highlight the difference between the classical (random) and the quantum walk, we demonstrate the reversibility of the latter. Finally, we extend the quantum walk by using two ions, giving the walker the additional possibility to stay instead of taking a step.
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