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Coherent Magnon Optics in a Ferromagnetic Spinor Bose-Einstein Condensate

机译:铁磁自旋玻色-爱因斯坦凝聚物中的相干磁振光学

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We measure the dispersion relation, gap, and magnetic moment of a magnon in the ferromagnetic F = 1 spinor Bose-Einstein condensate of ~(87)Rb. From the dispersion relation we measure an average effective mass 1.033(2)_(stat)(10)_(sys) times the atomic mass, as determined by interfering standing and running coherent magnon waves within the dense and trapped condensed gas. The measured mass is higher than theoretical predictions of mean-field and beyond-mean-field Beliaev theory for a bulk spinor Bose gas with s-wave contact interactions. We observe a magnon energy gap of h × 2.5(1)_(stat)(2)_(sys) Hz, which is consistent with the predicted effect of magnetic dipole-dipole interactions. These dipolar interactions may also account for the high magnon mass. The effective magnetic moment of -1.04(2)_(stat)(8)_(sys) times the atomic magnetic moment is consistent with mean-field theory.
机译:我们测量了〜(87)Rb的铁磁F = 1旋量的玻色-爱因斯坦凝聚物中的磁振子的色散关系,间隙和磁矩。从弥散关系中,我们测量出平均有效质量1.033(2)_(stat)(10)_(sys)乘以原子质量,这是通过干扰稠密和捕获的冷凝气体中的驻波和行进相干磁子波确定的。对于具有s波接触相互作用的整体自旋Bose气体,实测质量高于平均场和平均场Beliaev理论的理论预测。我们观察到h×2.5(1)_(stat)(2)_(sys)Hz的磁能隙,这与磁偶极子-偶极子相互作用的预测效应一致。这些偶极相互作用也可以解释高马农质量。 -1.04(2)_(stat)(8)_(sys)乘以原子磁矩的有效磁矩与平均场理论一致。

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