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观察辉石型 NaFeGe2O6 中的多铁性能。

Observation of multiferroic properties in pyroxene NaFeGe2O6.

机构信息

CeNSCMR, Department of Physics and Astronomy, Seoul National University, Seoul, Korea.

出版信息

J Phys Condens Matter. 2012 Aug 1;24(30):306001. doi: 10.1088/0953-8984/24/30/306001. Epub 2012 Jul 4.

Abstract

We report the observation of multiferroicity in a clinopyroxene NaFeGe(2)O(6) polycrystal from the investigation of its electrical and magnetic properties. Following the previously known first magnetic transition at T(N1) = 13 K, a second magnetic transition appears at T(N2) = 11.8 K in the temperature dependence of the magnetization. A ferroelectric polarization starts to develop clearly at T(N2) rather than T(N1) and its magnitude increases up to ~13 μC m(-2) at 5 K, supporting the idea that the ferroelectric state in NaFeGe(2)O(6) stems from a helical spin order stabilized below T(N2). When a magnetic field of 90 kOe is applied, the electric polarization decreases to 9 μC m(-2) and T(N2) slightly increases by 0.5 K. At intermediate magnetic fields, around 28 and 78 kOe, anomalies in the magnetoelectric current, magnetoelectric susceptibility, and field derivative of magnetization curves are found, indicating field-induced spin-state transitions. Based on these electrical and magnetic properties, we provide a detailed low temperature phase diagram up to 90 kOe, and discuss the nature of each phase of NaFeGe(2)O(6).

摘要

我们通过对其电、磁性质的研究,观察到了一种来自斜方辉石族的 NaFeGe(2)O(6)多铁性。在先前已知的第一磁转变温度 T(N1) = 13 K 之后,磁化强度的温度依赖性中出现了第二个磁转变温度 T(N2) = 11.8 K。在 T(N2)而不是 T(N1)处,明显开始出现铁电极化,其幅度在 5 K 时增加到约 13 μC m(-2),支持了 NaFeGe(2)O(6)中铁电态源于低于 T(N2)稳定的螺旋自旋有序的观点。当施加 90 kOe 的磁场时,电位移减小到 9 μC m(-2),T(N2)略微增加 0.5 K。在中间磁场,约 28 和 78 kOe 时,在磁电电流、磁电灵敏度和磁化曲线的磁场导数中发现了异常,表明磁场诱导的自旋态转变。基于这些电和磁性质,我们提供了高达 90 kOe 的详细低温相图,并讨论了 NaFeGe(2)O(6)的每个相的性质。

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