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Two-Photon Excitation of Low-Lying Electronic Quadrupole States in Atomic Clusters

机译:低光电子四极态在原子团簇中的双光子激发

摘要

A simple scheme of population and detection of low-lying electronic quadrupole modes in free small deformed metal clusters is proposed. The scheme is analyzed in terms of the TDLDA (time-dependent local density approximation) calculations. As test case, the deformed cluster $Na^+_{11}$ is considered. Long-living quadrupole oscillations are generated via resonant two-photon (two-dipole) excitation and then detected through the appearance of satellites in the photoelectron spectra generated by a probe pulse. Femtosecond pump and probe pulses with intensities $I = 2cdot 10^{10} - 2cdot 10^{11} W/cm^2$ and pulse duration $T = 200 - 500$ fs are found to be optimal. The modes of interest are dominated by a single electron-hole pair and so their energies, being combined with the photoelectron data for hole states, allow to gather new information about mean-field spectra of valence electrons in the HOMO-LUMO region. Besides, the scheme allows to estimate the lifetime of electron-hole pairs and hence the relaxation time of electronic energy into ionic heat.
机译:提出了一种简单的填充和检测自由小变形金属团簇中低地电子四极子模式的方案。根据TDLDA(时间相关的局部密度近似)计算来分析该方案。作为测试案例,考虑了变形簇$ Na ^ + _ {11} $。长寿命四极子振荡是通过共振双光子(双偶极子)激发产生的,然后通过探测脉冲产生的光电子光谱中卫星的出现来检测到。飞秒泵浦和探测脉冲的强度$ I = 2 cdot 10 ^ {10}-2 cdot 10 ^ {11} W / cm ^ 2 $,脉冲持续时间$ T = 200-500 $ fs是最佳的。感兴趣的模式由单个电子-空穴对决定,因此它们的能量与空穴状态的光电子数据结合,可以收集有关HOMO-LUMO区域中价电子平均场谱的新信息。此外,该方案允许估算电子-空穴对的寿命,从而估算电子能量转化为离子热的弛豫时间。

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