Erhältlich:
Nicht auf Lager
Buch (Softcover): Fachbuch
Non-Equilibrium Plasma Physics
A General Theory for Complex Ionized Flows: Memory, Gradients, Quantum Effects, and Criticality
Produkt bewerten
Verlag:
Eliva Press Unsere-Artikel-Nr.: P35489931
EAN: 9789999345576
Erhältlich:
Nicht auf Lager
Zustellung: Di, 01.09.2026
Versand: Kostenlos
CHF 79.–
Beschreibung
A General Theoretical Framework for Non-Equilibrium Plasma Dynamics presents a unified, first-principles approach to modeling plasmas far from thermodynamic equilibrium. Conventional fluid models, based on conservation laws and Maxwell's equations, fail to predict key phenomena in lightning, gas discharges, and fusion plasmas-achieving only 67% accuracy. This work systematically integrates four essential but neglected mechanisms: gradient-driven instabilities, non-Markovian memory effects, quantum correlations, and critical transition phenomena. The resulting generalized equation is rigorously derived from the Boltzmann equation and Wigner kinetics, validated against 47 lightning events and multiple laboratory experiments, and achieves 92% predictive accuracy. The book provides complete dimensionless formulation, linear stability analysis, numerical implementation guidelines, and practical case studies in semiconductor etching, fusion edge plasmas, plasma medicine, spacecraft re-entry, waste treatment, and astrophysics. This framework establishes a new paradigm for plasma physics, bridging theory and application. A General Theoretical Framework for Non-Equilibrium Plasma Dynamics presents a unified, first-principles approach to modeling plasmas far from thermodynamic equilibrium. Conventional fluid models, based on conservation laws and Maxwell's equations, fail to predict key phenomena in lightning, gas discharges, and fusion plasmas-achieving only 67% accuracy. This work systematically integrates four essential but neglected mechanisms: gradient-driven instabilities, non-Markovian memory effects, quantum correlations, and critical transition phenomena. The resulting generalized equation is rigorously derived from the Boltzmann equation and Wigner kinetics, validated against 47 lightning events and multiple laboratory experiments, and achieves 92% predictive accuracy. The book provides complete dimensionless formulation, linear stability analysis, numerical implementation guidelines, and practical case studies in semiconductor etching, fusion edge plasmas, plasma medicine, spacecraft re-entry, waste treatment, and astrophysics.
Spezifikationen
Sprache
- Englisch
Autor
- Mohamed Lefliti
Erscheinungsjahr
- 2026
Format
- Buch (Softcover)
Anzahl Seiten
- 46