Elementary Physics of Complex Plasmas

Complex plasmas are dusty plasmas in which the density and electric charges of the dust grains are sufficiently high to induce long-range grain-grain interactions, as well as strong absorption of charged-plasma components. Together with the sources replenishing the plasma such systems form a highly...

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Bibliografiske detaljer
Hovedforfatter: Vladimirov, Sergey V., 19..-
Andre forfattere: Cytovič, Vadim Nikolaevič, 1929-2015 (Éditeur intellectuel), Morfill, Gregory E. (Éditeur intellectuel), Thomas, Hubertus Maria, 1965- (Éditeur intellectuel)
Format: Livre numérique
Sprog:Anglais
Udgivet: Berlin, Heidelberg : Springer Berlin Heidelberg [20..].
Cham : Springer Nature
Udgivelse:1st ed. 2008.
Serier:Lecture Notes in Physics 731
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Edition sous un autre format:• Elementary Physics of Complex Plasmas, Texte imprimé, 9783540815815
• Elementary Physics of Complex Plasmas, Texte imprimé, 9783642067037
• Elementary physics of complex plasmas, V.N. Tsytovich ... [et al.], Berlin, Springer, 2008, 1 vol. (XIV-370 p.), Lecture notes in physics, 978-3-540-29000-1
Indholdsfortegnelse:
  • 1 Complex Plasma - Why It Is an Unusual State of Matter? 1.1 General Physical Differences Between Complex Plasma and Ordinary Matter 1.2 General Terminology in Complex Plasma and Ordinary Matter 1.3 History: Complex Plasmas in Space Physics 1.4 Problems of Strong Coupling in Plasmas 1.5 Openness of Complex Plasma Systems and Long-range Collective Interactions 1.6 Plasma Condensation 1.7 Special Aspects of Complex Plasma Investigations 1.8 Structures and Self-organization in Complex Plasmas 1.9 Outlook of the Subsequent Presentation References 2 Why Complex Plasmas Have Many Applications in Future Technology? 2.1 Main Discoveries in Applications of Complex Plasmas 2.2 Computer Technology 2.3 First Steps to Using Complex Plasma Properties in Computer Industry 2.4 New Surfaces, New Materials 2.5 New Energy Production 2.6 Environmental Problems References 3 Elementary Processes in Complex Plasmas 3.1 Screening of Grain Field in a Plasma 3.2 Charging of Grains in Partially Ionized Plasma 3.3 Forces Acting on Ions 3.4 Forces Acting on Grains 3.5 Forces Acting on Electrons: Characteristic Electric Fields References 4 Collective Effects in Complex Plasmas 4.1 Collective Linear Modes 4.2 Universal Instability of a Complex Plasma 4.3 Collective Modes Excited by Fast Particles 4.4 Observations of Collective Modes 4.5 Problems to be Solved for Collective Modes 4.6 Fluctuations, Collective Pair Interactions, and Pair Correlation Functions References 5 Micro-particle Collective and Non-collective Pair Interactions 5.1 General Properties of Micro-particle Pair Interactions 5.2 Shadow Non-collective Attraction Forces 5.3 Collective Attraction for Linear Screening 5.4 Collective Interactions for Non-linear Screening 5.5 Measurements of Screened Potential in Grain-grain Collisions References 6 Experiments on Plasma Crystals and Long-range Correlations 6.1 Plasma Crystals 6.2 Melting and Phase Transitions 6.3 Paradigms for Plasma Crystal Formation 6.4 Inspiration from Experiments References 7 Mono-layer Plasma Crystals and Clusters 7.1 Mono-layer Plasma Crystals 7.2 2D Plasma Clusters References