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Ultrafast dynamical response of strongly correlated oxides: Role of coherent optical and acoustic oscillations

机译:强相关氧化物的超快速动态响应:相干光和声振荡的作用

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摘要

We describe some general features in the transient behaviour of strongly correlated transition metal oxides, following ultrafast excitation by a femtosecond laser pulse. Our analysis is based on time-resolved reflectivity measurements on (V_1-_xCr_x)_2O _3, a prototype Mott-Hubbard material, and the manganite compound (La_(0.67)Sr_(0.33))MnO_3, performed over a time window of several tenths of ps. We point out the contribution of coherent lattice oscillations-both optical and acoustic-to the overall signal, and show how they can depend on the crystallographic orientation of the material with respect to the laser beam wavevector and polarisation. In particular, an acoustic wave is always found to be present in our measurements, and we show that its oscillating behaviour is superposed to the average time evolution of the material, which can be instead related in different ways to its electronic properties and thermodynamic phase. All these effects are to be taken into account in any further analysis leading to the estimation of relevant physical parameters for correlated materials, and they appear to play a significant role not only for reflectivity techniques, but also in other kinds of ultrafast pump-probe experiments.
机译:我们描述了飞秒激光脉冲超快激发后强相关过渡金属氧化物的瞬态行为中的一些一般特征。我们的分析基于对(V_1-_xCr_x)_2O _3,Mott-Hubbard原型材料和锰铁化合物(La_(0.67)Sr_(0.33))MnO_3的时间分辨反射率测量,测量时间窗口为十分之几ps我们指出了相干晶格振荡(包括光学和声学)对整个信号的贡献,并展示了它们如何取决于材料相对于激光束波矢和偏振的晶体取向。特别是,在我们的测量中总是发现存在声波,并且我们证明了它的振荡行为与材料的平均时间演化相叠加,而声波的替代特性可以通过不同的方式与其电子特性和热力学相联系。所有这些影响都需要在进行任何进一步分析以考虑相关材料的相关物理参数时加以考虑,并且它们似乎不仅对反射率技术而且在其他类型的超快泵浦探针实验中都起着重要作用。 。

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