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Inductively guided circuits for ultracold dressed atoms

机译:感应引导的超冷修饰原子电路

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摘要

Recent progress in optics, atomic physics and material science has paved the way to study quantum effects in ultracold atomic alkali gases confined to non-trivial geometries. Multiply connected traps for cold atoms can be prepared by combining inhomogeneous distributions of DC and radio-frequency electromagnetic fields with optical fields that require complex systems for frequency control and stabilization. Here we propose a flexible and robust scheme that creates closed quasi-one-dimensional guides for ultracold atoms through the ‘dressing’ of hyperfine sublevels of the atomic ground state, where the dressing field is spatially modulated by inductive effects over a micro-engineered conducting loop. Remarkably, for commonly used atomic species (for example, 7Li and 87Rb), the guide operation relies entirely on controlling static and low-frequency fields in the regimes of radio-frequency and microwave frequencies. This novel trapping scheme can be implemented with current technology for micro-fabrication and electronic control.
机译:光学,原子物理学和材料科学领域的最新进展为研究限于非平凡几何形状的超冷原子碱气体中的量子效应铺平了道路。可以通过将DC和射频电磁场的不均匀分布与需要复杂系统进行频率控制和稳定化的光场相结合来制备用于冷原子的多重连接的陷阱。在这里,我们提出了一种灵活而健壮的方案,该方案通过对原子基态的超精细子级进行“修整”,为超冷原子创建封闭的准一维导引,其中修整场在微工程导体上受到感应效应的空间调制。环。值得注意的是,对于常用的原子种类(例如 7 Li和 87 Rb),引导操作完全依赖于控制无线电体制中的静态和低频场频率和微波频率。这种新颖的捕获方案可以用当前的微细加工和电子控制技术来实现。

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