首页> 外文期刊>The European physical journal, B. Condensed matter physics >Ferromagnetism of the repulsive atomic Fermi gas: three-body recombination and domain formation
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Ferromagnetism of the repulsive atomic Fermi gas: three-body recombination and domain formation

机译:排斥原子费米气体的铁磁性:三体重组和畴形成

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摘要

The simplest model for itinerant ferromagnetism, the Stoner model, has so far eluded experimental observation in repulsive ultracold fermions due to rapid three-body recombination at large scattering lengths. Here we show that a ferromagnetic phase can be stabilised by imposing a moderate optical lattice. The reduced kinetic energy drop upon formation of a polarized phase in an optical lattice extends the ferromagnetic phase to smaller scattering lengths where three-body recombination is small enough to permit experimental detection of the phase. We also show, using time dependent density functional theory, that in such a setup ferromagnetic domains emerge rapidly from a paramagnetic initial state.
机译:斯通纳模型是最简单的流动铁磁性模型,到目前为止,由于在大散射长度上快速的三体重组,在排斥性超冷费米子中还没有进行实验观察。在这里,我们表明可以通过施加适度的光学晶格来稳定铁磁相。在光学晶格中形成极化相后,动能下降降低,从而将铁磁相扩展到较小的散射长度,其中三体复合足够小,可以通过实验检测到该相。我们还使用时变密度泛函理论显示,在这种设置下,铁磁畴从顺磁初始状态迅速出现。

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