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Probing the non-equilibrium transient state in magnetite by a jitter-free two-color X-ray pump and X-ray probe experiment

机译:通过无抖动的双色X射线泵和X射线探针实验探测磁铁矿中的非平衡瞬态

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摘要

We present a general experimental concept for jitter-free pump and probe experiments at free electron lasers. By generating pump and probe pulse from one and the same X-ray pulse using an optical split-and-delay unit, we obtain a temporal resolution that is limited only by the X-ray pulse lengths. In a two-color X-ray pump and X-ray probe experiment with sub 70 fs temporal resolution, we selectively probe the response of orbital and charge degree of freedom in the prototypical functional oxide magnetite after photoexcitation. We find electronic order to be quenched on a time scale of (30 ± 30) fs and hence most likely faster than what is to be expected for any lattice dynamics. Our experimental result hints to the formation of a short lived transient state with decoupled electronic and lattice degree of freedom in magnetite. The excitation and relaxation mechanism for X-ray pumping is discussed within a simple model leading to the conclusion that within the first 10 fs the original photoexcitation decays into low-energy electronic excitations comparable to what is achieved by optical pump pulse excitation. Our findings show on which time scales dynamical decoupling of degrees of freedom in functional oxides can be expected and how to probe this selectively with soft X-ray pulses. Results can be expected to provide crucial information for theories for ultrafast behavior of materials and help to develop concepts for novel switching devices.
机译:我们提出了在自由电子激光器上进行无抖动泵浦和探针实验的一般实验概念。通过使用光学分裂和延迟单元从一个相同的X射线脉冲生成泵浦脉冲和探测脉冲,我们可以获得仅受X射线脉冲长度限制的时间分辨率。在低于70 fs的时间分辨率的双色X射线泵和X射线探针实验中,我们选择性地探测了光激发后原型功能氧化物磁铁矿中轨道和电荷自由度的响应。我们发现电子顺序在(30±30)fs的时间尺度上被淬灭,因此最有可能快于任何晶格动力学所预期的速度。我们的实验结果暗示了磁铁矿中电子和晶格自由度解耦的短寿命瞬态的形成。在一个简单的模型中讨论了用于X射线泵浦的激发和弛豫机制,得出的结论是,在最初的10 fs内,原始的光激发会衰减成与光泵浦脉冲激发所能达到的低能电子激发。我们的发现表明,可以预期在哪个时间尺度上功能性氧化物的自由度动态去耦,以及如何使用软X射线脉冲对此进行选择性探测。可以预期结果将为有关材料超快行为的理论提供关键信息,并有助于开发新颖的开关设备的概念。

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