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首页> 外文期刊>Laser physics letters >Shortcuts to adiabatic passage for multiparticles in distant cavities: applications to fast and noise-resistant quantum population transfer, entangled states' preparation and transition
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Shortcuts to adiabatic passage for multiparticles in distant cavities: applications to fast and noise-resistant quantum population transfer, entangled states' preparation and transition

机译:远腔中多粒子绝热通道的捷径:在快速且抗噪声的量子种群转移,纠缠态的准备和过渡中的应用

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In this letter, we study the fast and noise-resistant population transfer, quantum entangled states' preparation and quantum entangled states' transition by constructing shortcuts to adiabatic passage (STAP) for multiparticles based on the approach of 'Lewis-Riesenfeld invariants' in a distant cavity quantum electronic dynamics (QED) system. Numerical simulation demonstrates that all of the schemes are fast and robust against the decoherence caused by atomic spontaneous emission and photon leakage. Moreover, it is not only the total operation time but also the robustness in each scheme against decoherence that is irrelevant to the number of qubits. This might lead to a useful step toward realizing fast and noise-resistant quantum information processing in current technology.
机译:在这封信中,我们基于“ Lewis-Riesenfeld不变量”方法,通过构建多粒子绝热通道(STAP)的捷径,研究了快速且抗噪声的种群转移,量子纠缠态的制备和量子纠缠态的转变。远腔量子电子动力学(QED)系统。数值模拟表明,所有方案均能快速,可靠地抵抗原子自发发射和光子泄漏引起的退相干。此外,不仅是总的操作时间,而且每种方案中的抗退相干性的鲁棒性都与量子比特的数量无关。这可能会导致朝着在当前技术中实现快速且抗噪声的量子信息处理迈出有用的一步。

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