首页> 外文期刊>Physical review >Crossover in the mechanism of ferroelectric phase transition of Pb[(Mg_(1/3)Nb_(2/3))_(1-x)Ti_x]O_3 single crystals studied by Brillouin light scattering
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Crossover in the mechanism of ferroelectric phase transition of Pb[(Mg_(1/3)Nb_(2/3))_(1-x)Ti_x]O_3 single crystals studied by Brillouin light scattering

机译:布里渊光散射研究Pb [(Mg_(1/3)Nb_(2/3))_(1-x)Ti_x] O_3单晶在铁电相变机理中的交叉

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摘要

The inelastic light scattering spectrum of Pb[(Mg_(1/3)Nb_(2/3)_(1-x)Ti_x]O_3 (PMN-xPT) single crystals with x=0-0.55 due to longitudinal-acoustic (LA) waves was investigated in a wide temperature range by using a Brillouin scattering technique. The acoustic frequency of LA modes of all PMN-xPT crystals showed a significant softening upon cooling in the high-temperature range where the deviation from the high-temperature linearity starts from ~750 K. In addition, hypersonic damping exhibited a remarkable increase upon cooling toward the freezing or ferroelectric phase-transition temperature. These acoustic anomalies were attributed to the polarization fluctuations due to the displacive polarization component arising from the condensation of transverse-optic mode, flipping of polar nanoregions, and, for PMN-xPT with large x, correlated polar nanometer-sized regions (PNRs) as ordering units. The application of the modified superparaelectric model to the measured acoustic properties revealed that the activation energy for the flipping of PNRs displayed a sharp increase upon crossing the composition of morphotropic phase boundary (MPB) of PMN-xPT. This change was attributed to the appearance of order-disorder polarization component, i.e., polar clusters in PMN-xPT with large x beyond MPB, which indicated PNRs are correlated and oriented along the same direction. These results may suggest a crossover in the mechanism of phase transition with increasing x: disordered glass state with random directions of PNRs in PMN, comparatively abrupt growth of PNRs at the ferroelectric phase transition without changing the directions of their dipole moments at small x, and order-disorder type ferroelectric transition through alignment of PNRs into single direction via order-disorder mechanism at large x. These results are consistent with broadband dielectric and quasielastic scattering data that show critical slowing down for PMN-xPT with large x.
机译:由于纵向声波(LA)而使x = 0-0.55的Pb [(Mg_(1/3)Nb_(2/3)_(1-x)Ti_x] O_3(PMN-xPT)单晶的非弹性光散射光谱用布里渊散射技术在宽温度范围内研究了波,所有PMN-xPT晶体的LA模的声频在高温下冷却后会显着软化,从高温线性开始偏离从〜750 K开始,高超声速阻尼在冷却至冰冻或铁电相变温度时表现出显着的增加,这些声学异常归因于由横向光模的凝结引起的位移极化分量引起的极化波动。 ,翻转极性纳米区域,以及对于具有较大x的PMN-xPT,将相关的极性纳米尺寸区域(PNR)作为有序单元。改进的超顺电模型在测得的声学性质的研究中的应用导致PNR翻转的活化能在越过PMN-xPT的相变相界(MPB)组成时显示出急剧增加。这种变化归因于有序-无序极化分量的出现,即PMN-xPT中的极性簇具有大于MPB的x,这表明PNR相互关联并沿相同方向取向。这些结果可能表明相变机理随着x的增加而发生交叉:无序玻璃态与PMN中PNRs的随机方向,铁电相变中PNRs的相对突然增长而不改变小x时偶极矩的方向,以及通过在大x处通过有序-无序机制将PNR排列成单个方向,实现有序-无序型铁电跃迁。这些结果与宽带介电和准弹性散射数据一致,后者显示了x较大的PMN-xPT的严重减速。

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