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Quantum state transfer using stimulated Raman adiabatic passage under a dissipative environment

机译:在耗散环境下使用受激拉曼绝热通道进行量子态转移

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摘要

We propose a potentially practical scheme to realize arbitrary quantum state transfer between two traveling atoms that go through a high-finesse cavity by using stimulated Raman adiabatic passage in an atom-cavity-laser system under a dissipative environment. By numerically simulating the dynamics of the system, we demonstrate quantitatively that the fidelities of the quantum state transferred between two atoms can be maximized by elaborately adjusting the peak amplitudes of the laser's Rabi frequency and the detuning of the Raman transition. Additionally, the noise effect from the atomic and cavity dissipation can reduce the fidelity. The experimental feasibility is justified using currently available technology.
机译:我们提出了一种潜在可行的方案,通过在耗散环境下使用原子腔激光系统中的受激拉曼绝热通道,来实现通过高精细腔的两个行进原子之间的任意量子态转移。通过数值模拟系统的动力学,我们定量地证明了,通过精心调节激光器的拉比频率的峰值幅度和拉曼跃迁的失谐,可以最大化两个原子之间传递的量子态的保真度。此外,原子和腔耗散产生的噪声效应会降低保真度。实验可行性是使用当前可用技术证明的。

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