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The model of ultrafast light-induced insulator-metal phase transition in VO_2

机译:VO_2中超快光诱导的绝缘体-金属相变模型

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Ultrafast light-induced insulator-metal phase transitions (PT) in VO_2 thin films was studied with use of a pump-probe technique. The theoretical and experimental study of PT kinetics shows that the PT could be realized via an intermediate state. The relaxation processes after optical pumping are dependent on pump energy. The excitonic controlled model for such type of PT is proposed. The main channel for the ultrafast light-induced PT is the resonant transition between excited states of correlated vibronic Wannier-Mott excitons (WME) in insulator phase and the unoccupied excited states in metallic phase. During this process an equilibrium local distortion occurred. According to the proposed model the experimental observation of the drastic temperature- and pump power- dependent relaxation processes could be interpreted.
机译:利用泵浦探针技术研究了VO_2薄膜中超快光诱导的绝缘体-金属相变(PT)。 PT动力学的理论和实验研究表明,PT可以通过中间状态来实现。光泵浦后的弛豫过程取决于泵浦能量。提出了用于这种类型的PT的激子控制模型。超快光诱导的PT的主要通道是绝缘子相中相关振动电子Wannier-Mott激子(WME)的激发态与金属相中未占据的激发态之间的共振跃迁。在此过程中,发生了平衡的局部变形。根据提出的模型,可以解释剧烈的温度和泵浦功率相关松弛过程的实验观察。

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