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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Quantum information in cavity quantum electrodynamics: logical gates, entanglement engineering and 'Schrodinger-cat states'
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Quantum information in cavity quantum electrodynamics: logical gates, entanglement engineering and 'Schrodinger-cat states'

机译:腔量子电动力学中的量子信息:逻辑门,纠缠工程和“薛定inger-猫态”

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摘要

In cavity-quantum-electrodynamics experiments, two-level Rydberg atoms and single-photon microwave fields can be seen as qubits. Quantum gates based on resonant and dispersive atom-field effects have been realized., which implement various kinds of conditional dynamics between these qubits. We have also studied the interaction between a single atom and coherent fields stored in the cavity. By progressively increasing the number of photons in these fields, we have explored various aspects of the quantum-classical boundary. We have realized a complementarity experiment demonstrating the continuous evolution of an apparatus from a quantum to a classical behaviour. We have also prepared 'Schrodinger-cat'-like states of the field made of a, few photons, and observed their decoherence. We present a brief review of these experiments along with a proposal to study larger systems, i.e. coherent fields with more photons. Fundamental limits to the size of mesoscopic superpositions of field states in a cavity will be briefly discussed. [References: 24]
机译:在腔量子电动力学实验中,可以将两级里德堡原子和单光子微波场视为量子位。已经实现了基于共振和色散原子场效应的量子门,它们在这些量子位之间实现了各种条件动力学。我们还研究了单个原子与存储在腔中的相干场之间的相互作用。通过逐渐增加这些场中的光子数量,我们探索了量子经典边界的各个方面。我们已经实现了一个互补性实验,该实验证明了一种设备从量子行为到经典行为的不断发展。我们还准备了由几个光子组成的类似于“薛定inger猫”的状态,并观察了它们的退相干。我们将简要介绍这些实验,并提出研究更大系统(即具有更多光子的相干场)的建议。将简要讨论腔中场状态的介观叠加大小的基本限制。 [参考:24]

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