论文标题

微重力中量子气泡的透视

Perspective on Quantum Bubbles in Microgravity

论文作者

Lundblad, Nathan, Aveline, David C., Balaz, Antun, Bentine, Elliot, Bigelow, Nicholas P., Boegel, Patrick, Efremov, Maxim A., Gaaloul, Naceur, Meister, Matthias, Olshanii, Maxim, de Melo, Carlos A. R. Sá, Tononi, Andrea, Vishveshwara, Smitha, White, Angela C., Wolf, Alexander, Garraway, Barry M.

论文摘要

理解量子系统的进展是由超速原子系统的几何形状,拓扑和维度的探索所驱动的。国际空间站上的NASA冷原子实验室(CAL)使超速原子气泡(一种横向无法接近的拓扑结构)的研究。原理泡泡实验已在CAL上采用RF涂层技术进行。还提出了另一种技术(双物种相互作用驱动的气泡)。这两种技术都可以在接下来的十年中驱动发现的基本物理研究。

Progress in understanding quantum systems has been driven by the exploration of the geometry, topology, and dimensionality of ultracold atomic systems. The NASA Cold Atom Laboratory (CAL) aboard the International Space Station has enabled the study of ultracold atomic bubbles, a terrestrially-inaccessible topology. Proof-of-principle bubble experiments have been performed on CAL with an rf-dressing technique; an alternate technique (dual-species interaction-driven bubbles) has also been proposed. Both techniques can drive discovery in the next decade of fundamental physics research in microgravity.

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