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Titlebook: Complex Plasmas; Scientific Challenge Michael Bonitz,Jose Lopez,Hauke Thomsen Book 2014 Springer International Publishing Switzerland 2014

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Kinetic Monte Carlo Simulations of Cluster Growth and Diffusion in Metal-Polymer Nanocompositesy discussed and physically motivated. The chapter closes with a discussion of simulation results of metal-polymer interface formation and co-deposition of metal and polymer. Yet, the intention of these simulations is not to provide a microscopic understanding of metal-polymer nanocomposites formatio
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1615-5653 scale generation of ozone using microplasmas and novel applications of atmospheric-pressure non-thermal plasmas in dentistry..Going beyond the scope of traditional plasma texts, the presentation is very well su978-3-319-37587-8978-3-319-05437-7Series ISSN 1615-5653 Series E-ISSN 2197-6791
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Introduction to Streaming Complex Plasmas A: Attraction of Like-Charged Particlesrticles may attract each other. This is explained by accumulation of positive ions below the dust particles (with respect to the streaming direction). In this chapter, we describe the dependence of this ion focus and the resulting wakes on ., . and ., as the three key parameters, that can be varied
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Introduction to Streaming Complex Plasmas B: Theoretical Description of Wake Effectsifferent particle species. This challenging multiscale problem inherent to studying streaming complex plasmas can efficiently be tackled by a statistical ansatz for the light plasma constituents in combination with first-principle Langevin dynamics simulations of the heavy and strongly correlated du
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Introduction to Configuration Path Integral Monte Carlooretical and computational tools. Quantum Monte Carlo methods are among the most successful approaches to first-principle simulations of many-body quantum systems. In this chapter we present a recently developed method—the configuration path integral Monte Carlo (CPIMC) method for moderately coupled
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Fundamental and Applied Studies of Molecular Plasmas Using Infrared Absorption Techniquesstic technique for in situ studies of the fundamental physics and chemistry of molecular plasmas. The increasing interest in processing plasmas containing hydrocarbons, fluorocarbons, nitrogen oxides and organo-silicon compounds has led to further applications of MIR-AS because most of these compoun
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