The rapidly growing ultrafast science with X-ray lasers unveils atomic scale processes with unprecedented time resolution bringing the so called "molecular movie" within reach. X-ray absorption spectroscopy is one of the most powerful x-ray techniques providing both local atomic order and electronic structure when coupled with ad-hoc theory. Collecting absorption spectra within few x-ray pulses is possible only in a dispersive setup. We demonstrate ultrafast time-resolved measurements of the LIII-edge x-ray absorption near-edge spectra of irreversibly laser excited Molybdenum using an average of only few x-ray pulses with a signal to noise ratio limited only by the saturation level of the detector. The simplicity of the experimental set-up makes this technique versatile and applicable for a wide range of pump-probe experiments, particularly in the case of non-reversible processes.
Towards simultaneous measurements of electronic and structural properties in ultra-fast x-ray free electron laser absorption spectroscopy experiments.
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作者:Gaudin J, Fourment C, Cho B I, Engelhorn K, Galtier E, Harmand M, Leguay P M, Lee H J, Nagler B, Nakatsutsumi M, Ozkan C, Störmer M, Toleikis S, Tschentscher Th, Heimann P A, Dorchies F
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2014 | 起止号: | 2014 Apr 17; 4:4724 |
| doi: | 10.1038/srep04724 | ||
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