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Enhancement of genuine multipartite entanglement and purity of three qubits under decoherence via bang-bang pulses with finite period

机译:通过有限周期的bang-bang脉冲增强非相干下真正多方纠缠和三个量子位的纯度

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We propose a scheme to control the dynamics of genuine multipartite entanglement and purity of qubits within spatially separated thermal baths using the bang-bang pulses with finite period. The qubits are initially entangled and have no direct interactions. The genuine multipartite entanglement of the system is measured by an entanglement monotone based on a generalization of the Peres-Horodecki criterion to multipartite systems. We first derive a master equation to describe the non-Markovian dynamics of an arbitrary number of qubits within their baths with decoherence and dynamical decoupling. Then, we calculate the entanglement monotone and purity of three qubits in super-Ohmic, sub-Ohmic, and Ohmic baths numerically. The effects of the period of pulses on the non-Markovian dynamics of qubits are discussed. We show the genuine multipartite entanglement and purity can be simultaneously improved by applying the bang-bang pulses with finite period. In particular, the bang-bang pulses with finite period are more efficient when the qubits are put into the sub-Ohmic or Ohmic baths than the case of the super-Ohmic bath.
机译:我们提出了一种使用有限周期的爆炸脉冲来控制空间分隔的热浴中真正多方纠缠和量子比特纯度的动力学方案。量子位最初是纠缠的,没有直接的交互作用。基于Peres-Horodecki准则对多部分系统的推广,通过纠缠单调来测量系统的真正多部分纠缠。我们首先导出一个主方程来描述其浴中具有消相干和动态解耦的任意数量的量子位的非马尔可夫动力学。然后,我们通过数值计算了超级欧姆,次欧姆和欧姆浴中三个量子位的纠缠单调和纯度。讨论了脉冲周期对量子比特的非马尔可夫动力学的影响。我们证明了通过施加有限周期的砰砰脉冲可以同时改善真正的多部分纠缠和纯度。特别地,当将量子比特放入次欧姆浴或欧姆浴中时,具有有限周期的爆炸脉冲比超级欧姆浴的情况更有效。

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