Abstract
We demonstrate generation of coherent microjoule-scale, low-order harmonic supercontinua in the deep and vacuum ultraviolet (4-9 eV), resulting from the nonlinear transformations of near-single-cycle laser pulses in a gas cell. We show theoretically that their formation is connected to a novel nonlinear regime, holding promise for the generation of powerful deep-UV and vacuum ultraviolet subfemtosecond pulses. Our work opens the route to pump-probe spectroscopy of subfemtosecond-scale valence-shell phenomena in atoms, molecules, and condensed matter. © 2010 The American Physical Society.
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CITATION STYLE
Reiter, F., Graf, U., Serebryannikov, E. E., Schweinberger, W., Fiess, M., Schultze, M., … Goulielmakis, E. (2010). Route to attosecond nonlinear spectroscopy. Physical Review Letters, 105(24). https://doi.org/10.1103/PhysRevLett.105.243902
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