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Prospects of Forming High-Spin Polar Molecules from Ultracold Atoms

机译:从超级原子形成高自旋极性分子的前景

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We investigate Feshbach resonances in collisions of high-spin atoms such as Er and Dy with closed-shell atoms such as Sr and Yb, using coupled-channel scattering and bound-state calculations. We consider both low-anisotropy and high-anisotropy limits. In both regimes, we find many resonances with a wide variety of widths. The wider resonances are suitable for tuning interatomic interactions, while some of the narrower resonances are highly suitable for magnetoassociation to form high-spin molecules. These molecules might be transferred to short-range states, where they would have large magnetic moments and electric dipole moments that can be induced with very low electric fields. The results offer the opportunity to study mixed quantum gases where one species is dipolar and the other is not and open up important prospects for a new field of ultracold high-spin polar molecules.
机译:我们使用耦合通道散射和绑定状态计算,在高旋转原子(如SR和Yb)的闭合壳原子(如SR和YB)的碰撞中调查Feshbach共振。我们考虑低各向异性和高各向异性的限制。在两个制度中,我们发现许多具有各种各样的宽度的共振。更宽的共振适合于调节内部组相互作用,而一些较窄的共振非常适合于磁增生以形成高自旋分子。这些分子可能被转移到短距离状态,在那里它们将具有大的磁矩和电偶极矩,可以用非常低的电场诱导。结果提供了研究混合量子气体的机会,其中一个物种是双极,另一个物种不是并开辟了一个新的超克高自旋极性分子领域的重要前景。

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