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Quantum origins of moment fragmentation in Nd_2Zr_2O_7

机译:Nd_2Zr_2O_7中矩碎裂的量子起源

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Spin-liquid states are often described as the antithesis of magnetic order. Recently, however, it has been proposed that in certain frustrated magnets the magnetic degrees of freedom may "fragment" in such a way as to give rise to a coexistence of spin liquid and ordered phases. Recent neutron-scattering results [S. Petit, E. Lhotel, B. Canals, M. Ciomaga Hatnean, J. Ollivier, H. Muttka, E. Ressouche, A. R. Wildes, M. R. Lees, and G. Balakrishnan, Nat. Phys. 12, 746 (2016)] suggest that this scenario may be realized in the pyrochlore magnet Nd_2Zr_2O_7. These observations show the characteristic pinch-point features of a Coulombic spin liquid occurring alongside the Bragg peaks of an "all-in-all-out" ordered state. Here we explain the quantum origins of this apparent magnetic moment fragmentation, within the framework of a quantum model of nearest-neighbor exchange, appropriate to Nd_2Zr_2O_7. This model is able to capture both the ground-state order and the pinch points observed at finite energy. The observed fragmentation arises due to the combination of the unusual symmetry properties of the Nd~(3+) ionic wave functions and the structure of equations of motion of the magnetic degrees of freedom. The results of our analysis suggest that Nd_2Zr_2O_7 is proximate to a U(1) spin-liquid phase and is a promising candidate for the observation of a Higgs transition in a magnetic system.
机译:自旋液体状态通常被描述为磁序的对立面。但是,近来有人提出,在某些受挫的磁体中,磁性自由度可能以产生自旋液体和有序相共存的方式“碎片化”。最近的中子散射结果[S. Petit,E.Lhotel,B.Canals,M.Ciomaga Hatnean,J.Ollivier,H.Muttka,E.Resouche,A.R.Wildes,M.R.Lees和G.Balakrishnan,美国物理12,746(2016)]建议可以在烧绿石磁体Nd_2Zr_2O_7中实现这种情况。这些观察结果显示了库仑自旋液体在“全进全出”有序状态的布拉格峰旁边出现的夹点特征。在这里,我们在适用于Nd_2Zr_2O_7的最近邻居交换量子模型的框架内,解释了这种表观磁矩碎裂的量子起源。该模型能够捕获基态阶数和在有限能量下观察到的收缩点。观察到的碎片是由于Nd〜(3+)离子波函数的非对称性和磁自由度运动方程的组合而产生的。我们的分析结果表明,Nd_2Zr_2O_7接近U(1)自旋液相,并且是观察磁系统中希格斯跃迁的有希望的候选者。

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