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Inicio  /  Applied Sciences  /  Vol: 9 Par: 9 (2019)  /  Artículo
ARTÍCULO
TITULO

Probing Attosecond Electron Coherence in Molecular Charge Migration by Ultrafast X-Ray Photoelectron Imaging

Kai-Jun Yuan and André D Bandrauk    

Resumen

Electron coherence is a fundamental quantum phenomenon in today?s ultrafast physics and chemistry research. Based on attosecond pump?probe schemes, ultrafast X-ray photoelectron imaging of molecules was used to monitor the coherent electron dynamics which is created by an XUV pulse. We performed simulations on the molecular ion H+2 2 + by numerically solving time-dependent Schrödinger equations. It was found that the X-ray photoelectron angular and momentum distributions depend on the time delay between the XUV pump and soft X-ray probe pulses. Varying the polarization and helicity of the soft X-ray probe pulse gave rise to a modulation of the time-resolved photoelectron distributions. The present results provide a new approach for exploring ultrafast coherent electron dynamics and charge migration in reactions of molecules on the attosecond time scale.

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