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Transient Changes of Optical Properties in Semiconductors in Response to Femtosecond Laser Pulses

机译:飞秒激光脉冲响应半导体光学特性的瞬态变化

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摘要

In this paper we present an overview of our theoretical simulations on the interaction of ultrafast laser pulses with matter. Our dedicated simulation tool, X-ray induced Thermal And Non-thermal Transitions (XTANT) can currently treat semiconductors irradiated with soft to hard X-ray femtosecond pulses. During the excitation and relaxation of solids, their optical properties such as reflectivity, transmission and absorption, are changing, affected by transient electron excitation and, at sufficiently high dose, by atomic relocations. In this review we report how the transient optical properties can be used for diagnostics of electronic and structural transitions occurring in irradiated semiconductors. The presented methodology for calculation of the complex dielectric function applied in XTANT proves to be capable of describing changes in the optical parameters, when the solids are driven out of equilibrium by intense laser pulses. Comparison of model predictions with the existing experimental data shows a good agreement. Application of transient optical properties to laser pulse diagnostics is indicated.
机译:在本文中,我们概述了有关超快激光脉冲与物质相互作用的理论模拟。我们专用的仿真工具X射线诱导的热和非热跃迁(XTANT)目前可以处理用软到硬X射线飞秒脉冲辐照的半导体。在固体的激发和弛豫过程中,它们的光学特性(如反射率,透射率和吸收率)会发生变化,受到瞬态电子激发以及原子重定位的影响(足够高的剂量)。在这篇综述中,我们报告了瞬态光学特性如何用于诊断半导体中发生的电子和结构跃迁。当固体被强激光脉冲驱使失去平衡时,所提出的用于XTANT的复介电函数计算方法被证明能够描述光学参数的变化。模型预测与现有实验数据的比较显示出很好的一致性。指出了瞬态光学特性在激光脉冲诊断中的应用。

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