Publication | Open Access
Double-core-hole spectroscopy for chemical analysis with an intense X-ray femtosecond laser
185
Citations
18
References
2011
Year
X-ray SpectroscopyEngineeringChemical AnalysisLaser AblationChemistryIntense X-ray PulsesSynchrotron Radiation SourceElectron SpectroscopyOptical PropertiesDirect ObservationFree Electron LaserPhotonicsFree-electron LasersPhysicsDouble-core-hole SpectroscopyAtomic PhysicsX-ray Free-electron LaserSynchrotron RadiationNatural SciencesSpectroscopyLaser-induced BreakdownApplied PhysicsDch Ionization
Theory predicts that double-core-hole (DCH) spectroscopy can provide a new powerful means of differentiating between similar chemical systems with a sensitivity not hitherto possible. Although DCH ionization on a single site in molecules was recently measured with double- and single-photon absorption, double-core holes with single vacancies on two different sites, allowing unambiguous chemical analysis, have remained elusive. Here we report that direct observation of double-core holes with single vacancies on two different sites produced via sequential two-photon absorption, using short, intense X-ray pulses from the Linac Coherent Light Source free-electron laser and compare it with theoretical modeling. The observation of DCH states, which exhibit a unique signature, and agreement with theory proves the feasibility of the method. Our findings exploit the ultrashort pulse duration of the free-electron laser to eject two core electrons on a time scale comparable to that of Auger decay and demonstrate possible future X-ray control of physical inner-shell processes.
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