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Nanoscale photothermal and photoacoustic transients probed with extreme ultraviolet radiation

机译:用极端紫外线探测纳米级光热和光声瞬变

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摘要

We demonstrate the use of extreme ultraviolet (EUV) light for time-resolved measurements of the photothermal and photoacoustic response of materials. By using wavelengths that are 20× shorter than visible light, we demonstrate the potential for dramatically increased sensitivity and signal levels, in some cases by almost two orders of magnitude compared with visible light. This approach will enable probing of surface acoustic dynamics on nano-scale spatial dimensions of 50 nm and below, using a small scale coherent EUV sources employing high-harmonic generation.
机译:我们演示了使用极紫外(EUV)光对材料的光热和光声响应进行时间分辨测量。通过使用比可见光短20倍的波长,我们证明了显着提高灵敏度和信号水平的潜力,在某些情况下,与可见光相比,将其提高了近两个数量级。通过使用采用高谐波产生的小规模相干EUV光源,该方法将能够在50 nm及以下的纳米级空间尺寸上探测表面声动力学。

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