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Anisotropic lattice response induced by a linearly-polarized femtosecond optical pulse excitation in interfacial phase change memory material

机译:界面相变存储材料中线偏振飞秒光脉冲激发引起的各向异性晶格响应

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摘要

Optical excitation of matter with linearly-polarized femtosecond pulses creates a transient non-equilibrium lattice displacement along a certain direction. Here, the pump and probe pulse polarization dependence of the photo-induced ultrafast lattice dynamics in (GeTe)2/(Sb2Te3)4 interfacial phase change memory material is investigated under obliquely incident conditions. Drastic pump polarization dependence of the coherent phonon amplitude is observed when the probe polarization angle is parallel to the c –axis of the sample, while the pump polarization dependence is negligible when the probe polarization angle is perpendicular to the c –axis. The enhancement of phonon oscillation amplitude due to pump polarization rotation for a specific probe polarization angle is only found in the early time stage (≤2?ps). These results indicate that the origin of the pump and probe polarization dependence is dominantly attributable to the anisotropically-formed photo-excited carriers which cause the directional lattice dynamics.
机译:用线性偏振飞秒脉冲对物质进行光激发会沿特定方向产生瞬态非平衡晶格位移。在这里,(GeTe) 2 /(Sb 2 Te 3 )中光诱导的超快晶格动力学的泵浦和探针脉冲偏振依赖性在倾斜入射条件下研究了 4 界面相变存储材料。当探针偏振角平行于样品的c轴时,观察到相干声子幅度的剧烈泵激偏振依赖性,而当探针偏振角垂直于c轴时,泵浦偏振依赖性可忽略不计。对于特定的探头极化角,由于泵浦极化旋转而引起的声子振荡振幅的增强仅在早期阶段(≤2?ps)被发现。这些结果表明,泵浦和探针偏振依赖性的起源主要归因于各向异性形成的光激发载流子,其引起定向晶格动力学。

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