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An orbital-selective spin liquid in a frustrated heavy fermion spinel LiV2O4

机译:受挫重铁尖晶石LiV 2 O 4 中的轨道选择自旋液体

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The pronounced enhancement of the effective mass is the primary phenomenon associated with strongly correlated electrons. In the presence of local moments, the large effective mass is thought to arise from Kondo coupling, the interaction between itinerant and localized electrons. However, in d electron systems, the origin is not clear because of the competing Hund's rule coupling. Here we experimentally address the microscopic origin for the heaviest d fermion in a vanadium spinel LiV2O4 having geometrical frustration. Utilizing orbital-selective 51V NMR, we elucidate the orbital-dependent local moment that exhibits no long-range magnetic order despite persistent antiferromagnetic correlations. A frustrated spin liquid, Hund-coupled to itinerant electrons, has a crucial role in forming heavy fermions with large residual entropy. Our method is important for the microscopic observation of the orbital-selective localization in a wide range of materials including iron pnictides, cobaltates, manganites and ruthnates.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:有效质量的明显提高是与强相关电子相关的主要现象。在存在局部力矩的情况下,认为较大的有效质量是由近藤耦合,流动剂和局部电子之间的相互作用引起的。但是,在d电子系统中,由于竞争的洪德法则耦合,其起源尚不清楚。在这里,我们实验性地解决了具有几何挫折感的钒尖晶石LiV 2 O 4 中最重d费米子的微观成因。利用轨道选择性51V NMR,我们阐明了尽管存在反铁磁相关性,但轨道依赖性局部矩不表现出长距离磁阶。耦合到流动电子上的受挫自旋液体在形成具有大残留熵的重费米子中起着至关重要的作用。我们的方法对于显微镜观察多种材料的轨道选择性定位非常重要,这些材料包括铁磷化物,钴酸盐,锰酸盐和钌酸盐。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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