Department of Physics and Astronomy, The University of Nebraska, Lincoln, Nebraska 68588-0299, USA.
Phys Rev Lett. 2010 Dec 31;105(26):263201. doi: 10.1103/PhysRevLett.105.263201. Epub 2010 Dec 20.
The detection of spatial and temporal electronic motion by scattering of subfemtosecond pulses of 10 keV electrons from coherent superpositions of electronic states of both H and T2(+) is investigated. For the H atom, we predict changes in the diffraction images that reflect the time-dependent effective radius of the electronic charge density. For an aligned T2(+) molecule, the diffraction image changes reflect the time-dependent localization or delocalization of the electronic charge density.
通过将 10keV 电子的亚飞秒脉冲散射到 H 和 T2(+) 的电子态相干叠加,探测到空间和时间电子运动。对于 H 原子,我们预测了衍射图像的变化,这些变化反映了电子电荷密度的时变有效半径。对于取向的 T2(+)分子,衍射图像的变化反映了电子电荷密度的时变局域化或离域化。