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Measurement of a vacuum-induced geometric phase

机译:测量真空诱导的几何相位

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摘要

Berry’s geometric phase naturally appears when a quantum system is driven by an external field whose parameters are slowly and cyclically changed. A variation in the coupling between the system and the external field can also give rise to a geometric phase, even when the field is in the vacuum state or any other Fock state. We demonstrate the appearance of a vacuum-induced Berry phase in an artificial atom, a superconducting transmon, interacting with a single mode of a microwave cavity. As we vary the phase of the interaction, the artificial atom acquires a geometric phase determined by the path traced out in the combined Hilbert space of the atom and the quantum field. Our ability to control this phase opens new possibilities for the geometric manipulation of atom-cavity systems also in the context of quantum information processing.
机译:当量子系统由参数缓慢且周期性变化的外部场驱动时,贝里的几何相位自然地出现。即使当场处于真空状态或任何其他福克状态时,系统与外部场之间耦合的变化也会引起几何相位。我们证明了在人工原子,超导跨子,与微波腔的单模相互作用下真空诱导的贝里相的出现。当我们改变相互作用的相位时,人造原子获得了一个几何相位,该几何相位由在原子的希尔伯特空间和量子场的组合中所描绘的路径确定。我们控制这一阶段的能力也为量子腔处理中的原子腔系统的几何操纵开辟了新的可能性。

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