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In situ imaging of the dynamics of photo-induced structural phase transition at high pressures by picosecond acoustic interferometry

机译:皮秒声干涉法在高压下光诱导结构相变动力学的原位成像

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Picosecond acoustic interferometry is used to monitor in time the motion of the phase transition boundary between two water ice phases, VII and VI, coexisting at a pressure of 2.15 GPa when compressed in a diamond anvil cell at room temperature. By analyzing the time-domain Brillouin scattering signals accumulated for a single incidence direction of probe laser pulses, it is possible to access ratios of sound velocity values and of the refractive indices of the involved phases, and to distinguish between the structural phase transition and a recrystallization process. Two-dimensional spatial imaging of the phase transition dynamics indicates that it is initiated by the pump and probe laser pulses, preferentially at the diamond/ice interface. This method should find applications in three-dimensional monitoring with nanometer spatial resolution of the temporal dynamics of low-contrast material inhomogeneities caused by phase transitions or chemical reactions in optically transparent media.
机译:皮秒声干涉法用于及时监测两个水冰相VII和VI之间的相变边界运动,该相变边界在室温下在金刚石砧盒中压缩时以2.15 GPa的压力共存。通过分析在探测激光脉冲的单个入射方向上累积的时域布里渊散射信号,可以访问声速值与所涉及相的折射率的比率,并区分结构相变和重结晶过程。相变动力学的二维空间成像表明,它是由泵浦激光和探测激光脉冲(最好在金刚石/冰界面处)引发的。该方法应在具有纳米空间分辨率的三维监测中找到应用,该空间分辨率是由光学透明介质中的相变或化学反应引起的低对比度材料不均匀性的时间动态变化。

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