Leading scientists discuss the most recent physical and experimental results in the physics of Bose-Einstein condensate theory, the theory of nonlinear lattices (including quantum and nonlinear lattices), and nonlinear optics and photonics. Classical and quantum aspects of the dynamics of nonlinear
[NATO Science Series II: Mathematics, Physics and Chemistry] Nonlinear Waves: Classical and Quantum Aspects Volume 153 || Linear and Nonlinear Bound States in Curved Waveguides
β Scribed by Abdullaev, Fatkhulla Kh.; Konotop, Vladimir V.
- Book ID
- 118231572
- Publisher
- Kluwer Academic Publishers
- Year
- 2005
- Tongue
- English
- Weight
- 479 KB
- Edition
- 2004
- Category
- Article
- ISBN-13
- 9781402021886
No coin nor oath required. For personal study only.
β¦ Synopsis
Leading scientists discuss the most recent physical and experimental results in the physics of Bose-Einstein condensate theory, the theory of nonlinear lattices (including quantum and nonlinear lattices), and nonlinear optics and photonics. Classical and quantum aspects of the dynamics of nonlinear waves are considered. The contributions focus on the Gross-Pitaevskii equation and on the quantum nonlinear SchrΓΆdinger equation. Recent experimental results on atomic condensates and hydrogen bonded systems are reviewed. Particular attention is given to nonlinear matter waves in periodic potential.
π SIMILAR VOLUMES
Complex liquids constitute a basic element in modern materials science; their significant features include self-assembly, mesoscale structures, complex dynamics, unusual phases and enormous sensitivity to perturbations. Understanding their nature and properties are a great challenge to modern materi
Complex liquids constitute a basic element in modern materials science; their significant features include self-assembly, mesoscale structures, complex dynamics, unusual phases and enormous sensitivity to perturbations. Understanding their nature and properties are a great challenge to modern materi
Complex liquids constitute a basic element in modern materials science; their significant features include self-assembly, mesoscale structures, complex dynamics, unusual phases and enormous sensitivity to perturbations. Understanding their nature and properties are a great challenge to modern materi