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Positron spectroscopy of point defects in the skyrmion-lattice compound MnSi

机译:正电子光谱法测定天体离子-晶格化合物MnSi中的点缺陷

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摘要

Outstanding crystalline perfection is a key requirement for the formation of new forms of electronic order in a vast number of widely different materials. Whereas excellent sample quality represents a standard claim in the literature, there are, quite generally, no reliable microscopic probes to establish the nature and concentration of lattice defects such as voids, dislocations and different species of point defects on the level relevant to the length and energy scales inherent to these new forms of order. Here we report an experimental study of the archetypical skyrmion-lattice compound MnSi, where we relate the characteristic types of point defects and their concentration to the magnetic properties by combining different types of positron spectroscopy with ab-initio calculations and bulk measurements. We find that Mn antisite disorder broadens the magnetic phase transitions and lowers their critical temperatures, whereas the skyrmion lattice phase forms for all samples studied underlining the robustness of this topologically non-trivial state. Taken together, this demonstrates the unprecedented sensitivity of positron spectroscopy in studies of new forms of electronic order.
机译:出色的晶体完美性是在大量不同材料中形成新型电子订单的关键要求。尽管出色的样品质量代表了文献中的标准要求,但在一般情况下,尚没有可靠的显微镜探针来确定晶格缺陷(例如空位,位错和点缺陷的不同种类)的性质和浓度,这些缺陷与长度和长度相关。这些新形式的订单固有的能量尺度。在这里,我们报告了对原型天sky离子-晶格化合物MnSi的实验研究,在该实验中,我们通过结合不同类型的正电子波谱,从头算和大量测量,将点缺陷的特征类型及其浓度与磁性能相关联。我们发现Mn反位错扩大了磁性相变并降低了其临界温度,而所有研究的样品的Skyrmion晶格相形式都强调了这种拓扑非平凡状态的鲁棒性。两者合计,证明了正电子光谱学在研究新形式的电子订单中具有前所未有的敏感性。

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