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Muon-Fluorine Entangled States in Molecular Magnets

机译:分子磁体中的Muon氟缠结态

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The information accessible from a muon-spin relaxation experiment can be limited due to a lack of knowledge of the precise muon stopping site. We demonstrate here the possibility of localizing a spin polarized muon in a known stopping state in a molecular material containing fluorine. The muon-spin precession that results from the entangled nature of the muon spin and surrounding nuclear spins is sensitive to the nature of the stopping site. We use this property to identify three classes of sites that occur in molecular magnets and describe the extent to which the muon distorts its surroundings.
机译:由于缺乏对精确的μ子停止位点的了解,从μ子自旋弛豫实验获得的信息可能会受到限制。我们在这里证明了在已知的停止状态下将自旋极化的μ子定位在含氟分子材料中的可能性。介子自旋和周围核自旋的纠缠性质导致的介子自旋进动对停止位点的性质敏感。我们使用此属性来识别分子磁体中出现的三类位置,并描述介子使周围环境变形的程度。

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