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Topological gapless matters in three-dimensional ultracold atomic gases

机译:三维超冷原子气体中的拓扑无间隙物质

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Three-dimensional topological gapless matters with gapless degeneracies protected by a topological invariant defined over a closed manifold in momentum space have attracted considerable interest in various fields ranging from condensed matter materials to ultracold atomic gases. As a highly controllable and disorder free system, ultracold atomic gases provide a versatile platform to simulate topological gapless matters. Here, the current progress in studies of topological gapless phenomena in three-dimensional cold atom systems is summarized in the review. It is mainly focused on Weyl points, structured (type-II) Weyl points, Dirac points, nodal rings and Weyl exceptional rings in cold atoms. Since interactions in cold atoms can be controlled via Feshbach resonances, the progress in both superfluids for attractive interactions and non-interacting cold atom gases is reviewed.
机译:在动量空间中的闭合歧管上定义的具有拓扑不变性的具有无间隙简并性的三维拓扑无间隙物质引起了人们的广泛兴趣,涉及从冷凝物质到超冷原子气体的各个领域。作为一种高度可控且无障碍的系统,超冷原子气体提供了一个通用的平台来模拟拓扑无间隙的物质。在这里,综述了三维冷原子系统中拓扑无间隙现象的研究进展。它主要关注冷原子中的Weyl点,结构化(II型)Weyl点,Dirac点,节点环和Weyl例外环。由于可以通过Feshbach共振控制冷原子中的相互作用,因此,对吸引相互作用的超流体和非相互作用的冷原子气体的进展进行了综述。

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