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Probing nonequilibrium dynamics with white-light femtosecond pulses

机译:用白光飞秒脉冲探测非平衡动力学

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Femtosecond pulsed lasers have become an invaluable tool for examining ultrafast nonequilibrium dynamics. With pulsewidths of a few hundred femtoseconds (fs) to less than 10 fs, these lasers can clearly provide unprecedented temporal resolution. By amplifying ultrashort laser pulses to sufficient levels of energy per pulse, it is possible to exploit the nonlinear optical properties of certain materials to generate extremely broadband pulses. These pulses retain the time structure of the incident pulse, but contain a spectral bandwidth extending from the infrared to as far as the ultraviolet. By generating white-light pulses, it becomes possible to probe ultrafast nonlinear processes over a large range of energies. In this paper, the process of generating white-light ultrashort pulses will be presented, along with a discussion of different probing techniques and procedures necessary for modeling the transient optical data. Finally, results from pump-probe measurements using a white-light probe on indium phosphide (InP) films will be presented as a demonstration of this technique.
机译:飞秒脉冲激光器已经成为检查超快非平衡动力学的宝贵工具。凭借几百飞秒(fs)到小于10 fs的脉冲宽度,这些激光器可以明显提供空前的时间分辨率。通过将超短激光脉冲放大到每个脉冲足够的能量水平,可以利用某些材料的非线性光学特性来产生极宽的脉冲。这些脉冲保留了入射脉冲的时间结构,但包含了从红外到紫外为止的光谱带宽。通过产生白光脉冲,可以在很大的能量范围内探测超快的非线性过程。在本文中,将介绍生成白光超短脉冲的过程,以及对建模瞬态光学数据所需的不同探测技术和过程的讨论。最后,将使用在磷化铟(InP)膜上使用白光探针的泵浦探针测量结果来介绍该技术。

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