论文标题

模仿旋转密度波订单中的Cu $ _3 $ nb $ _2 $ o $ _8 $

Imitation of spin density wave order in Cu$_3$Nb$_2$O$_8$

论文作者

Giles-Donovan, N., Qureshi, N., Johnson, R. D., Zhang, L. Y., Cheong, S. -W., Cochran, S., Stock, C.

论文摘要

基于调制局部矩的自旋密度波通常与金属材料相关,但最近在显示磁和结构阶参数的绝缘体中报道了。我们讨论了一个这样的示例,即多效CU $ _3 $ nb $ _2 $ o $ $ _8 $,据报道要进行两种磁相变,首先是在$ t_n \ 26.5k $的旋转密度波阶段,然后是旋转的旋转阶段,然后是在$ T_2 \ of T_2 \ of t_2 \ of 24k $ [R. R. R. R. R. R. [R. R. R. R. R. R. R. R. R. R. R. R. R. R. R. R. R. R. R. R. R. R. R. T_ 24k $ h。 D. Johnson等人,物理学。 Rev. Lett。,107,137205(2011)]打破了晶体倒置对称性。我们应用球形极化法以确认低温磁性结构,但仅观察到单个磁相变为螺旋阶。我们认为,所报道的旋转密度波源于对称允许的磁性参数组件的脱钩,并由热波动驱动。这为磁性而不是核结构提供了一种破坏反转对称性的机制,从而创建了一个中间相,该相结构模仿了旋转密度波。随着温度的降低,这种中间结构破坏了晶体的稳定,使得结构手性诱导,如电化极化的出现所反映,而模仿自旋密度波就会放松成通用的螺旋螺旋。这提供了一种情况,磁性结构会破坏反转对称性,而晶体结构保持中心对称。

Spin density waves, based on modulated local moments, are usually associated with metallic materials, but have recently been reported in insulators which display coupled magnetic and structural order parameters. We discuss one such example, the multiferroic Cu$_3$Nb$_2$O$_8$, which is reported to undergo two magnetic phase transitions, first to a spin density wave phase at $T_N \approx 26.5K$, and then to a helicoidal structure coupled to an electric polarization below $T_2 \approx 24K$ [R. D. Johnson, et al., Phys. Rev. Lett., 107, 137205 (2011)] which breaks the crystallographic inversion symmetry. We apply spherical polarimetry to confirm the low-temperature magnetic structure, yet only observe a single magnetic phase transition to helicoidal order. We argue that the reported spin density wave originates from a decoupling of the components of the magnetic order parameter, as allowed by symmetry and driven by thermal fluctuations. This provides a mechanism for the magnetic, but not nuclear, structure to break inversion symmetry thereby creating an intermediate phase where the structure imitates a spin density wave. As the temperature is reduced, this intermediate structure destabilizes the crystal such that a structural chirality is induced, as reflected by the emergence of the electric polarization, and the imitation spin density wave relaxes into a generic helicoid. This provides a situation where the magnetic structure breaks inversion symmetry while the crystal structure remains centrosymmetric.

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