Abstract
We show through experiment and calculations how all-optical quasi-phase-matching of high-order harmonic generation can be used to selectively enhance emission from distinct quantum trajectories at high photon energies. Electrons rescattered in a strong field can traverse short and long quantum trajectories that exhibit differing coherence lengths as a result of variations in intensity of the driving laser along the direction of propagation. By varying the separation of the pulses in a counterpropagating pulse train, we selectively enhance either the long or the short quantum trajectory, and observe distinct spectral signatures in each case. This demonstrates a new type of coupling between the coherence of high-order harmonic beams and the attosecond time-scale quantum dynamics inherent in the process. © IOP Publishing Ltd and Deutsche Physikalische Gesellschaft.
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CITATION STYLE
Zhang, X., Lytle, A. L., Cohen, O., Murnane, M. M., & Kapteyn, H. C. (2008). Quantum-path control in high-order harmonic generation at high photon energies. New Journal of Physics, 10. https://doi.org/10.1088/1367-2630/10/2/025021
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