Kugeler O, Prümper G, Hentges R, Viefhaus J, Rolles D, Becker U, Marburger S, Hergenhahn U
Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany.
Phys Rev Lett. 2004 Jul 16;93(3):033002. doi: 10.1103/PhysRevLett.93.033002.
Resonant Auger decay of core-excited molecules during ultrafast dissociation leads to a Doppler shift of the emitted electrons depending on the direction of the electron emission relative to the dissociation axis. We have investigated this process by angle-resolved electron-fragment ion coincidence spectroscopy. Electron energy spectra for selected emission angles for the electron relative to the molecular axis reveal the occurrence of intermolecular electron scattering and electron transfer following the primary emission. These processes amount to approximately 25% of the resonant atomic Auger intensity emitted in the studied transition.
在超快解离过程中,核激发分子的共振俄歇衰变会导致发射电子产生多普勒频移,这取决于电子发射方向相对于解离轴的方向。我们通过角分辨电子-碎片离子符合光谱对这一过程进行了研究。相对于分子轴的选定电子发射角的电子能谱揭示了在初次发射后分子间电子散射和电子转移的发生。这些过程约占所研究跃迁中发射的共振原子俄歇强度的25%。