用非弹性中子散射和第一性原理计算研究YVO3相变动力学

Q4 Physics and Astronomy
Y. Tao, D. Abernathy, Tianran Chen, T. Yildirim, Jiaqiang Yan, Jianshi Zhou, J. Goodenough, D. Louca
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引用次数: 1

摘要

强相关系统包括一系列表现出不同寻常的电子和磁性的材料,如铜氧化物中的高温超导性[1]和锰酸盐中的巨磁阻[2]。YVO3就是这样一种材料,由于自旋、晶格和轨道自由度之间的复杂耦合而备受关注。当过渡金属离子V3+位于八面体氧笼中形成钙钛矿结构时,相关效应可导致Jahn-Teller(JT)畸变、轨道有序、电荷和自旋条纹形成、极化子局域化和相分离。YVO3在其许多结构和相变以及磁振子变化过程中的和晶格动力学3,YVO3中自旋波和声子的信息直接观测
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics of phase transitions in YVO3 investigated via inelastic neutron scattering and first-principles calculations
Strong correlated system includes a wide class of materials that exhibit unusual electronic and magnetic properties, such as high-temperature superconductivity in copper oxides [1] and colossal magneto-resistivity in manganites [2]. YVO 3 is one such material that has at-tracted much attention due to the intricate coupling between spin, lattice, and orbital degrees of freedom. As the transition-metal ion V 3+ sits in an octahedral oxygen cage forming a perovskite structure, the correlation effects can lead to Jahn-Teller (JT) distortions, orbital ordering, charge and spin stripe formation, polaron localization, and phase separation. the and lattice dynamics in YVO 3 across its many structural and phase transitions and magnon changes 3 , information di-rect observation of the spin-waves and phonons in YVO 3
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来源期刊
Neutron News
Neutron News Physics and Astronomy-Nuclear and High Energy Physics
CiteScore
0.30
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发文量
36
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