Carpenter M A, Pesquera D, O'Flynn D, Balakrishnan G, Mufti N, Nugroho A A, Palstra T T M, Mihalik M, Mihalik M, Zentková M, Almeida A, Moreira J Agostinho, Vilarinho R, Meier D
Department of Earth Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EQ, United Kingdom.
Department of Physics, University of Warwick, Coventry CV4 7AL, United Kingdom.
J Phys Condens Matter. 2021 Apr 8;33(12). doi: 10.1088/1361-648X/abbdba.
Resonant ultrasound spectroscopy has been used to characterise strain coupling and relaxation behavior associated with magnetic/magnetoelectric phase transitions in GdMnO, TbMnOand TbMnFeOthrough their influence on elastic/anelastic properties. Acoustic attenuation ahead of the paramagnetic to colinear-sinusoidal incommensurate antiferromagnetic transition at ∼41 K correlates with anomalies in dielectric properties and is interpreted in terms of Debye-like freezing processes. A loss peak at ∼150 K is related to a steep increase in electrical conductivity with a polaron mechanism. The activation energy,, of ≳0.04 eV from a loss peak at ∼80 K is consistent with the existence of a well-defined temperature interval in which the paramagnetic structure is stabilised by local, dynamic correlations of electric and magnetic polarisation that couple with strain and have relaxation times in the vicinity of ∼10s. Comparison with previously published data for SmYMnOconfirms that this pattern may be typical for multiferroic orthorhombicMnOperovskites (= Gd, Tb, Dy). A frequency-dependent loss peak near 10 K observed for TbMnOand TbMnFeO, but not for GdMnO, yielded⩾ ∼0.002 eV and is interpreted as freezing of some magnetoelastic component of the cycloid structure. Small anomalies in elastic properties associated with the incommensurate and cycloidal magnetic transitions confirm results from thermal expansion data that the magnetic order parameters have weak but significant coupling with strain. Even at strain magnitudes of ∼0.1-1‰, polaron-like strain effects are clearly important in defining the development and evolution of magnetoelectric properties in these materials. Strains associated with the cubic-orthorhombic transition due to the combined Jahn-Teller/octahedral tilting transition in the vicinity of 1500 K are 2-3 orders of magnitude greater. It is inevitable that ferroelastic twin walls due to this transition would have significantly different magnetoelectric properties from homogeneous domains due to magnetoelastic coupling with steep strain gradients.
共振超声光谱已被用于表征与GdMnO₃、TbMnO₃和TbMnFeO₃中磁/磁电相变相关的应变耦合和弛豫行为,通过它们对弹性/滞弹性性质的影响来实现。在约41K时顺磁到共线正弦非 commensurate反铁磁转变之前的声衰减与介电性质的异常相关,并根据类德拜冻结过程进行解释。在约150K处的一个损耗峰与具有极化子机制的电导率急剧增加有关。在约80K处的一个损耗峰的激活能≳0.04eV,这与存在一个明确的温度区间相一致,在该区间内顺磁结构通过电和磁极化的局部动态相关性得以稳定,这些相关性与应变耦合且弛豫时间在约10⁻⁹s附近。与之前发表的SmYMnO₃数据比较证实,这种模式对于多铁性正交Mn₃O₃钙钛矿(=Gd、Tb、Dy)可能是典型的。在TbMnO₃和TbMnFeO₃中观察到但在GdMnO₃中未观察到的在10K附近的频率依赖损耗峰,其激活能⩾约0.002eV,并被解释为摆线结构的一些磁弹性分量的冻结。与非 commensurate和摆线磁转变相关的弹性性质的小异常证实了热膨胀数据的结果,即磁有序参数与应变具有弱但显著的耦合。即使在应变幅度约为0.1 - 1‰时,类极化子应变效应在定义这些材料中磁电性质的发展和演变方面显然也很重要。在1500K附近由于组合的 Jahn - Teller/八面体倾斜转变导致的立方 - 正交转变相关的应变要大2 - 3个数量级。由于这种转变产生的铁弹性孪晶界由于与陡峭应变梯度的磁弹性耦合,其磁电性质必然与均匀畴有显著不同。