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Titlebook: Ultrafast Dynamics Driven by Intense Light Pulses; From Atoms to Solids Markus Kitzler,Stefanie Gräfe Book 2016 Springer International Publ

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Control of Ultrafast Electron Dynamics with Shaped Femtosecond Laser Pulses: From Atoms to Solidsulse tailoring. We portray control of three-dimensional free-electron wave packets, strong-field control by selective population of dressed states (SPODS) and control of ionization processes in dielectrics. Prototypical spectral phase masks such as polynomial- and sinusoidal functions are discussed
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Attosecond Electron Spectroscopy in Moleculest. Attosecond science is nowadays a well-established research field and several techniques based on the use of attosecond pulses have been developed to investigate and control the electron dynamics initiated by photo-ionization in atoms, molecules and condensed matter. In this chapter we will review
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Controlling Atomic Photoabsorption by Intense Lasers in the Attosecond Time Domainries briefly, then present a detailed theoretical method to simulate the IR assisted dynamics by a single attosecond pulse or an attosecond pulse train in the extreme ultraviolet (xuv) regime. The key steps to understand IR assisted atomic photoabsorption processes are (1) the IR laser field modifie
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Highly Nonlinear and Ultrafast Optical Phenomena in Metallic Nanostructureson processes which—due to the localized excitation in optical near-fields—exhibit different properties and scalings from their counterparts in the gas phase or at planar surfaces. The Chapter is structured in two parts. The first part discusses various regimes in highly nonlinear photoelectron emiss
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