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Research Articles
Submitted on May 13, 2002 Steering Attosecond Electron Wave Packets with Light
1 Institut für Photonik, Technische Universität Wien, Gusshausstr. 27, A-1040 Wien, Austria. * To whom correspondence should be addressed. E-mail: ferenc.krausz{at}tuwien.ac.at. Photoelectrons excited by extreme ultraviolet or x-ray photons in the presence of a strong laser field generally suffer a spread of their energies due to the absorption and emission of laser photons. We demonstrate that if the emitted electron wavepacket is temporally confined to a small fraction of the oscillation period of the interacting light wave, its energy spectrum can be up- or downshifted by many times the laser photon energy without substantial broadening. The light wave can accelerate or decelerate the electron's drift velocity, i.e. steer the electron wavepacket like a classical particle. This capability strictly relies on a sub-femtosecond duration of the ionizing x-ray pulse and on its timing to the phase of the light wave with a similar accuracy, offering a simple and potentially single-shot diagnostic tool for attosecond pump-probe spectroscopy.
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Science. ISSN 0036-8075 (print), 1095-9203 (online)