By P. B. Corkum (auth.), Luis Plaja, Ricardo Torres, Amelle Zaïr (eds.)
Attophysics is an rising box in physics dedicated to the research and characterization of subject dynamics within the sub-femtosecond time scale. This publication provides assurance of a large set of chosen issues during this box, fascinating by means of their novelty and their capability impression. The booklet is written review-like. it's also basic chapters as advent to the sector for non-specialist physicists. The ebook is established in 4 sections: fundamentals, attosecond pulse know-how, purposes to measurements and keep an eye on of actual tactics and destiny views. it's a beneficial reference device for researchers within the box in addition to a concise advent to non-specialist readers.
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Additional resources for Attosecond Physics: Attosecond Measurements and Control of Physical Systems
At rescattering, therefore, there is still a considerable population in the ground state, and the product of probability amplitudes does not vanish. Therefore, the dipole amplitude is found to increase gradually with the laser field. As a consequence, the global behavior of the harmonic yield with the laser amplitude (Fig. 2(a)) describes the form of a valley: First, a decrease related with the degradation of the efficiency of the SC trajectories, followed by an increase as the efficiency of the NAT trajectories becomes the relevant contribution to the dipole spectrum.
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Pérez-Hernández and L. Roso a new kind of trajectories emerges in the turn-on which recombine efficiently in less than one optical cycle. These trajectories are different from the conventional, socalled “long” and “short”. In the following, we will refer to these as Non Adiabatic Turn-on (NAT) trajectories. On the other hand, a single-atom numerical simulations based on the exact integration of the 3 Dimensional Time Dependent Schrödinger Equation (3D TDSE) confirms that this new kind of trajectories are responsible for the unexpected growth of the harmonic yield when the laser intensity is increased up to two order of magnitude beyond the saturation limit.