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首页> 外文期刊>Physical review letters >Coupled Ultrafast Lattice and Polarization Dynamics in Ferroelectric Nanolayers
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Coupled Ultrafast Lattice and Polarization Dynamics in Ferroelectric Nanolayers

机译:铁电纳米层中耦合的超快晶格和极化动力学

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We report the first analysis of the polarization and lattice dynamics in a metal/ferroelectric/metal nanolayer system by femtosecond x-ray diffraction. Two Bragg reflections provide information on the coupled dynamics of the two relevant phonon modes for ferroelectricity in perovskites, the tetragonal distortion and the soft mode. Optical excitation of the SrRuO_3 metal layers generates giant stress ( > 1 GPa) compressing the PbZr_(0.2)Ti_(0.8)O_3 layers by up to 2%. The resulting change of tetragonality reaches a maximum after 1.3 ps. As a result, the ferroelectric polarization P is reduced by up to 100% with a slight delay that is due to the anharmonic coupling of the two modes.
机译:我们报告了飞秒X射线衍射对金属/铁电/金属纳米层系统中的极化和晶格动力学的首次分析。两次布拉格反射提供有关钙钛矿中铁电的两个相关声子模式,四方畸变和软模式的耦合动力学的信息。 SrRuO_3金属层的光激发产生巨大应力(> 1 GPa),将PbZr_(0.2)Ti_(0.8)O_3层压缩多达2%。最终的四方性变化在1.3 ps后达到最大值。结果,由于这两种模式的非谐耦合,铁电极化P减小了高达100%的延迟。

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