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Titlebook: Lasers in Materials Science; Marta Castillejo,Paolo M. Ossi,Leonid Zhigilei Book 2014 Springer International Publishing Switzerland 2014 A

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Material Response to Laser Energy Deposition (Thermal and Hyperthermal Processes),f—mainly—solid targets. The strong dependence on laser pulse duration is emphasized. Both, the classical thermodynamic equilibrium route (heating, melting, and evaporation) and hyperthermal processes beyond thermodynamic equilibrium (superheating, phase explosion, surface/bulk instability) are compr
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Non-Thermal Material Response to Laser Energy Deposition,stic transport, electron–electron collision, and electron emission across interfaces. Multi-photon excitation and impact ionization with subsequent avalanche ionization occur in dielectrics and single photon absorption in metals. Finally, electron–phonon-scattering sets in, electrons and lattice equ
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Atomic Movies of Laser-Induced Structural and Phase Transformations from Molecular Dynamics Simulatum processes involved in short pulse laser processing and surface modification. This role is defined by the ability of MD simulations to reveal in-depth information on the structural and phase transformations induced by the laser excitation and, at the same time, to provide clear visual representati
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,Continuum Models of Ultrashort Laser–Matter Interaction in Application to Wide-Bandgap Dielectrics,rious interconnected processes initiated inside transparent materials under the action of ultrashort laser pulses with consequences in volumetric modification of material structure. In view of extreme complexity of the problem, modification mechanisms and their driving processes are still far from c
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Laser Interactions for the Synthesis and In Situ Diagnostics of Nanomaterials,thesis of novel new nanoparticles, nanotubes, and nanowires with metastable phases. Simultaneously, lasers provide unique opportunities for the remote characterization of nanomaterial size, structure, and composition through tunable laser spectroscopy, scattering, and imaging. Pulsed lasers offer th
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Laser-Mediated Nanoparticle Synthesis and Self-Assembling,of NPs requires a strict control on their synthesis and self-assembling. Inherent to the synthesis stage is the control of size, shape, composition, structure of the single NP. When NPs self-assemble on a suitable substrate the morphology and nanostructure of the NP architecture are the key paramete
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