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Accelerated and Noise-Resistant Protocol of Dissipation-Based Knill-Laflamme-Milburn State Generation with Lyapunov Control

机译:Lyapunov控制的加速和抗噪声抗性耗散的Knill-Laflammlamm-Milburn国家一代

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摘要

A protocol to generate steady Knill-Laflamme-Milburn (KLM) states of two Rydberg atoms with dissipation and Lyapunov control is proposed. Herein, combining with the quantum Zeno dynamics and the Rydberg antiblockade, a unique and steady solution of the master equation of the system is obtained, which satisfies the definition of KLM states. Furthermore, to polish the convergence rate, well-designed additional coherent control (ACC) fields with Lyapunov control are added into the traditional dissipation process. Numerical simulation reveals that the steady target state generation is prominently accelerated and the protocol is robust against the stochastic noise errors caused by laser fields. It is hoped that the work may provide an alternative protocol to polish the generation of entanglement.
机译:提出了一种具有耗散和Lyapunov控制的两个rydberg原子的稳定Knill-laflammlamm-milburn(KLM)状态的方案。 这里,与Quantum Zeno动力学和Rydberg防拦截的组合,获得了系统的母版方程的独特稳定的解决方案,其满足了KLM状态的定义。 此外,为了抛光收敛速率,具有Lyapunov控制的精心设计的附加相干控制(ACC)域被添加到传统的耗散过程中。 数值模拟表明,稳定的目标状态产生突出地加速,并且协议对由激光场引起的随机噪声误差稳健。 希望这项工作可以提供替代方案来抛光纠缠的产生。

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