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Entanglement transfer in a noisy cavity network with parity-deformed fields

机译:具有奇偶校验变形领域的嘈杂腔网络中的缠结转移

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We investigate the effects of parity-deformed fields on the dynamics of entanglement transfer to distant noninter-acting atomic qubits. These qubits are embedded in two distant lossy cavities connected by a leaky short-length fiber (or additional cavity). The process is studied within a single-excitation subspace, the parity-deformed cavity photons allowing the introduction of static local classical fields, which function as a control. The mechanism of state transfer is analyzed in comparison to the uncontrolled case. We find that the transfer evolution exhibits an asymmetry with respect to atom-field detuning, being sensitive to the sign of the detuning. Under a linear interaction controlled by the local classical fields, we show that the entanglement distribution can be both amplified and preserved against the noise. These results motivate developments towards the implementation or simulation of the purely theoretical model employing parity-deformed fields. (C) 2019 Optical Society of America
机译:我们调查奇偶校验变形领域对远程非交互式原子QUBITS缠结转移动态的影响。这些QUBITS嵌入两个通过泄漏的短纤维(或额外腔)连接的远处有损腔中。在单励磁子空间中研究了该过程,奇差变形腔光子允许引入静态局部经典领域,其用作控制。与不受控制的案例相比,分析了状态转移机制。我们发现转移进化表现出与原子场失谐的不对称,对静静脉的符号敏感。在由本地经典领域控制的线性交互下,我们表明纠缠分布可以放大并保持噪声。这些结果激发了采用奇偶校正变形领域的纯粹理论模型的实施或模拟的发展。 (c)2019年光学学会

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