论文标题

原子多末端Aharonov-Bohm干涉仪

Atomtronic multi-terminal Aharonov-Bohm interferometer

论文作者

Lau, Jonathan Wei Zhong, Gan, Koon Siang, Dumke, Rainer, Amico, Luigi, Kwek, Leong-Chuan, Haug, Tobias

论文摘要

我们研究了由由合成磁通量刺穿的三端环回路组成的冷原子的多功能装置,该环路可以连续或离散。通量通过aharonov-bohm效应通过环控制原子电流。我们的设备显示出从Andreev样负密度到正密度的磁通诱导的反射过渡。此外,通量可以将原子电流引导到特定的输出端口中,从而实现灵活的非重新性开关,以连接多个原子系统或感官旋转。通过及时更改通量,我们将恒定物质波电流转换为AC调制电流。该效果可用于实现原子频率发生器,并研究与Aharonov-Bohm效应有关的基本问题。我们在实验上证明了Bose-Einstein缩合到三端环的光形光能中。我们的工作打开了用于量子技术实用应用的新型原子设备的可能性。

We study a multi-functional device for cold atoms consisting of a three-terminal ring circuit pierced by a synthetic magnetic flux, where the ring can be continuous or discretized. The flux controls the atomic current through the ring via the Aharonov-Bohm effect. Our device shows a flux-induced transition of reflections from an Andreev-like negative density to positive density. Further, the flux can direct the atomic current into specific output ports, realizing a flexible non-reciprocal switch to connect multiple atomic systems or sense rotations. By changing the flux linearly in time, we convert constant matter wave currents into an AC modulated current. This effect can be used to realize an atomic frequency generator and study fundamental problems related to the Aharonov-Bohm effect. We experimentally demonstrate Bose-Einstein condensation into the light-shaped optical potential of the three-terminal ring. Our work opens up the possibility of novel atomtronic devices for practical applications in quantum technologies.

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