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FEL induced dynamics of small molecules on surfaces: N_2O on NaCl(100)

机译:FEL诱导表面上小分子的动力学:NaCl(100)上的N_2O

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The infrared laser-induced desorption of N_2O condensed on the single crystal surface of NaCl(100) is studied. In investigations of the desorption process of molecules from surfaces as well as of the dynamics of vibrationally excited adsorbate systems, a selective excitation of specific molecular vibrations is desirable. The Free Electron Laser for Infrared experiments "FELIX" is providing rapidly tunable infrared radiation that is well suited for this kind of investigations. A comparison of the wavelength dependent desorption yield to the linear absorption spectrum shows that desorption of intact, neutral molecules occurs when FELIX is resonant with an infrared active mode of the molecules. An analysis of the time-of-flight spectra as well as the dependence of the desorption yield on the layer thickness, laser fluence and substrate temperature point towards a resonant heating mechanism. First measurements on the dynamics of the vibrationally excited adsorbate using pump-probe spectroscopy are presented.
机译:研究了在NaCl(100)单晶表面上冷凝的红外激光解吸的N_2O。在研究分子从表面的解吸过程以及振动激发的吸附物系统的动力学时,特定分子振动的选择性激发是理想的。用于红外实验的自由电子激光器“ FELIX”提供了可快速调谐的红外辐射,非常适合此类研究。波长依赖性解吸产率与线性吸收光谱的比较表明,当FELIX与分子的红外活性模式共振时,会发生完整中性分子的解吸。飞行时间光谱的分析以及解吸量对层厚度,激光通量和衬底温度的依赖关系都指向共振加热机制。提出了使用泵探针光谱对振动激发吸附物动力学进行的首次测量。

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