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

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作者
Xiaowei Deng
Shuhong Hao
Hong Guo
Changde Xie
Xiaolong Su
机构
[1] State Key Laboratory of Quantum Optics and Quantum Optics Devices,
[2] Institute of Opto-Electronics,undefined
[3] Shanxi University,undefined
[4] Collaborative Innovation Center of Extreme Optics,undefined
[5] Shanxi University,undefined
[6] College of Physical Science and Technology,undefined
[7] Central China Normal University,undefined
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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.
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