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Extreme magnetoresistance and Shubnikov-de Haas oscillations in ferromagnetic DySb

机译:铁磁DySb中的极限磁阻和Shubnikov-de Haas振荡

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The electronic structures of a representative rare earth monopnictide (i.e., DySb) under high magnetic field (i.e., in the ferromagnetic state) are studied from both experimental and theoretical aspects. A non-saturated extremely large positive magnetoresistance (XMR) is observed (as large as 3.7 × 104% at 1.8 K and 38.7 T), along with the Shubnikov-de Haas oscillations that are well reproduced by our first principles calculations. Three possible origins of XMR are examined. Although a band inversion is found theoretically, suggesting that DySb might be topologically nontrivial, it is deeply underneath the Fermi level, which rules out a topological nature of the XMR. The total densities of electron-like and hole-like carriers are not fully compensated, showing that compensation is unlikely to account for the XMR. The XMR is eventually understood in terms of high mobility that is associated with the steep linear bands. This discovery is important to the intensive studies on the XMR of rare earth monopnictides.
机译:从实验和理论两个方面研究了代表性的稀土单素(即DySb)在高磁场(即铁磁状态)下的电子结构。观察到非饱和的极大正磁阻(XMR)(在1.8 K和38.7 T时高达3.7×104%),以及通过我们的第一个原理计算可以很好地再现的Shubnikov-de Haas振荡。 XMR的三个可能的起源进行了检查。尽管从理论上发现了带反转,这表明DySb在拓扑上可能是微不足道的,但它深深地位于费米能级之下,这排除了XMR的拓扑性质。电子类和空穴类载流子的总密度没有得到完全补偿,这表明补偿不太可能解释XMR。最终,将XMR理解为与陡峭线性频段相关的高迁移率。这一发现对于深入研究稀土单核苷酸XMR至关重要。

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