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Continuous variable quantum optical simulation for time evolution of quantum harmonic oscillators

机译:量子谐波振荡器时间演化的连续变量量子光学仿真

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Quantum simulation enables one to mimic the evolution of other quantum systems using a controllable quantum system. Quantum harmonic oscillator (QHO) is one of the most important model systems in quantum physics. To observe the transient dynamics of a QHO with high oscillation frequency directly is difficult. We experimentally simulate the transient behaviors of QHO in an open system during time evolution with an optical mode and a logical operation system of continuous variable quantum computation. The time evolution of an atomic ensemble in the collective spontaneous emission is analytically simulated by mapping the atomic ensemble onto a QHO. The measured fidelity, which is used for quantifying the quality of the simulation, is higher than its classical limit. The presented simulation scheme provides a new tool for studying the dynamic behaviors of QHO.
机译:量子仿真使一个能够使用可控量子系统模拟其他量子系统的演变。量子谐波振荡器(QHO)是量子物理学中最重要的模型系统之一。要观察高振荡频率的QHO的瞬态动态难以困难。通过光学模式和连续变量量子计算的逻辑操作系统,在时间演变期间通过实验模拟开放系统中QHO的瞬态行为。通过将原子集合映射到QHO上来分析模拟集体自发发射中的原子集合的时间演变。用于量化模拟质量的测量保真度高于其经典极限。呈现的仿真方案为研究QHO的动态行为提供了一种新的工具。

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