Using a passively stable attosecond beamline for relative phjavascript:void(0);otoemission time delays at high XUV photon energies
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Jain, Arohi
Gaumnitz, Thomas
Kheifets, Anatoli
Worner, Hans Jakob
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Optical Society of America
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We present and demonstrate an experimental scheme that enables overlap-free reconstruction of attosecond beating by the interference of two-photon transition (RABBITT) measurements at high extreme-ultraviolet (XUV) photon energies. A compact passively-stabilized attosecond beamline employing a multilayer (ML) mirror allows us to obtain XUV pulses consisting of only two odd high-harmonic orders from an attosecond pulse train (APT). We compare our new technique to existing schemes that are used to perform RABBITT measurements and discuss how our scheme resolves the limitations imposed by spectral complexity of the harmonic comb at high photon energies. We further demonstrate first applications of our scheme for rare gases and gas mixtures, and show that this scheme can be extended to gas-molecule mixtures.
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Optics Express
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