论文标题

linbo $ _3 $和litao $ _3 $在单轴压力下的振动特性

Vibrational properties of LiNbO$_3$ and LiTaO$_3$ under uniaxial stress

论文作者

Singh, Ekta, Pionteck, Mike N., Reitzig, Sven, Lange, Michael, Rüsing, Michael, Eng, Lukas M., Sanna, Simone

论文摘要

结构应变严重影响材料特性,例如线性和非线性光学响应。此外,应变起着关键作用,例如,在铁电体的物理学,尤其是其域壁的物理学中。 $μ$ -RAMAN光谱是一种适合研究这种应变效应的技术,因为它允许在本地测量晶格动力学。但是,从拉曼图中量化和重建应变场需要了解声子频率的应变依赖性。在这项工作中,我们在理论上和实验上分析了广泛使用的铁电锂和诱导锂锂的声子频率,这是通过密度功能理论和$ $ $ $ $ raman光谱的单轴应变的函数。总体而言,我们发现我们的$ ab $ $ $ INTIO $模型与应力电池执行的实验数据之间有一个很好的协议。大多数声子在压缩应变下显示出频率的增加,而对于拉伸菌株则观察到相反的频率。此外,对于E型声子,我们观察到在中等应变场(即$ \ pm0.2〜 \%$)沿x和y方向提升。因此,这项工作允许对从尼贝特锂和诱变组装的现代型和薄膜设备中的3D菌株进行系统分析。

Structural strain severely impacts material properties such as the linear and non-linear optical response. Moreover, strain plays a key role, e.g., in the physics of ferroelectrics and in particular of their domain walls. $μ$-Raman spectroscopy is a well-suited technique for the investigation of such strain effects, as it allows to measure the lattice dynamics locally. However, quantifying and reconstructing strain fields from Raman maps requires knowledge on the strain dependence of phonon frequencies. In this work, we have analyzed both theoretically and experimentally the phonon frequencies in the widely used ferroelectrics lithium niobate and lithium tantalate as a function of uniaxial strain via density functional theory and $μ$-Raman spectroscopy. Overall, we find a good agreement between our $ab$ $initio$ models and the experimental data performed with a stress cell. The majority of phonons show an increase in frequency under compressive strain, while the opposite is observed for tensile strains. Moreover, for E-type phonons, we observe the lifting of degeneracy already at moderate strain fields (i.e. at $\pm0.2~\%$) along the x and y directions. This work hence allows for the systematic analysis of 3D strains in modern-type bulk and thin-film devices assembled from lithium niobate and tantalate.

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