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首页> 外文期刊>The Journal of Chemical Physics >The principles of infrared-x-ray pump-probe spectroscopy. Applications on proton transfer in core-ionized water dimers
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The principles of infrared-x-ray pump-probe spectroscopy. Applications on proton transfer in core-ionized water dimers

机译:红外X射线泵浦探针光谱学的原理。质子转移在核电离水二聚体中的应用

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In this paper we derive the basic physics underlying infrared-x-ray pump-probe spectroscopy (IR, infrared). Particular features of the spectroscopy are highlighted and discussed, such as dependence on phase of the infrared pulse, duration and delay time of the x-ray pulse, and molecular orientation. Numerical applications are carried out for the water dimer using wave packet techniques. It is shown that core ionization of the donor oxygen of the water dimer results in a drastic change of the potential with the global minimum placed in the proton transfer region. The results of the modeling indicate that IR-x-ray pump-probe spectroscopy can be used to study the dynamics of proton transfer in this core-ionized state, and that, contrary to conventional core level photoelectron spectroscopy, x-ray core-ionization driven by an IR field is a proper method to explore the proton transfer in a system like the water dimer. We observe that the trajectory of the nuclear wave packet in the ground state potential well is strongly affected by the absolute phase of the IR pulse. (C) 2005 American Institute of Physics.
机译:在本文中,我们推导了红外X射线泵浦探针光谱法(IR,IRD)的基本物理原理。突出并讨论了光谱学的特定特征,例如对红外脉冲相位,X射线脉冲的持续时间和延迟时间以及分子取向的依赖性。使用波包技术对水二聚体进行了数值应用。结果表明,水二聚体的供体氧的核心电离导致电势急剧变化,而整体最小值位于质子转移区域。建模结果表明,IR-x射线泵浦光谱技术可用于研究在这种核心电离状态下质子转移的动力学,并且与常规核心级光电子能谱相反,x射线核心电离由红外场驱动的光是探索像水二聚体这样的系统中质子转移的合适方法。我们观察到,基态势阱中核波包的轨迹受到IR脉冲绝对相位的强烈影响。 (C)2005美国物理研究所。

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