arXiv · 1802.04652
Attosecond dispersive soft X-ray absorption fine structure spectroscopy in graphite
Abstract
Phase transitions of solids and structural transformations of molecules are canonical examples of important photo-induced processes, whose underlying mechanisms largely elude our comprehension due to our inability to correlate electronic excitation with atomic position in real time. Here, we present a decisive step towards such new methodology based on water-window-covering (284 eV to 543 eV) attosecond soft X-ray pulses that can simultaneously access electronic and lattice parameters via dispersive X-ray absorption fine-structure (XAFS) spectroscopy. We validate attoXAFS with an identification of the σ* and π* orbital contributions to the density of states in graphite simultaneously with its lattice's four characteristic bonding distances. This work demonstrates the concept of attoXAFS as a powerful real-time investigative tool which is equally applicable to gas-, liquid- and condensed phase.
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Bárbara Buades, Dooshaye Moonshiram, Themistoklis P. H. Sidiropoulos, Iker León, Peter Schmidt, Irina Pi, Nicola Di Palo, Seth L. Cousin, Antonio Picón, Frank Koppens, Jens Biegert. 2018-02-09. Attosecond dispersive soft X-ray absorption fine structure spectroscopy in graphite. https://doi.org/10.1364/optica.5.000502
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