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Titlebook: Ultrafast Phenomena XII; Proceedings of the 1 T. Elsaesser,S. Mukamel,N. F. Scherer Conference proceedings 2001 Springer-Verlag Berlin Heid

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Algorithms for Closed Loop Ultrafast Control of Quantum Dynamicsmaking them amenable to learning control are (a) the ability to have very large numbers of identical systems for submission to control, (b) the high duty cycle of laboratory laser controls, and (c) the ability to observe the impact of trial controls at ultrafast time scales. Various learning algorit
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Control of Quantum Dynamics by Adaptive Femtosecond Pulse Shapingmization goals in coherent control experiments. The significance of the electric field structure is investigated by reducing the search parameter space. Correlation experiments with secondharmonic generation (SHG) reveal a high degree of problem complexity.
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Challenges and Limitations on Generating Few Cycle Laser Pulses directly from Oscillatorsrs and exploiting dispersion-managed soliton formation in the cavity. For the first time sub-two-cycle pulses directly from the laser are generated with broad enough spectra to detect and control the evolution of the phase between carrier and envelope using interference between second and third harm
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Dispersion Management over one Octave with Tilted-Front-Interface Chirped Mirrorsinterface of the coating with respect to other interfaces of the multilayer. In addition, the elimination of adverse interference effects also results in a significant smoothening of the group delay dispersion versus wavelength.
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Conference proceedings 200113, 2000. The Ultrafast Phenomena Conferences are held every two years and provide a forum for discussion of the latest results in ultrafast optics and their applications in science and engineering. A total of more than 200 papers was presented, reporting progress in the technology of generating and
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