Signatures of the continuum electron phase in molecular strong-field photoelectron holography
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چکیده
Laser-driven electron recollision is at the heart of the rapidly growing field of attosecond science. The recollision wavepacket is qualitatively described within the strong-field approximation, which commonly assumes tunnelling ionization and plane-wave propagation of the liberated electron in the continuum. However, with increasing experimental sophistication, refinements to this simple model have become necessary. Through careful modelling and measurements of laser-induced recollision holography using aligned N2 molecules, we demonstrate that the continuum electron wavepacket already carries a non-trivial spatial phase structure immediately following ionization. This e ect is of rather general character: any molecule and any non-isotropic system that is ionized by a strong laser field will exhibit an o set in the phase of the continuum electron wavepacket. Specifically, this has important implications for any coherent scattering process in molecules, such as highharmonic generation or laser-induced electron holography.
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تاریخ انتشار 2014