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P. G. Kevrekidis, D. J. Frantzeskakis, Ricardo Carretero-Gonzalez - The Defocusing Nonlinear Schrodinger Equation: From Dark Solitons to Vortices and Vortex Rings - 9781611973938 - V9781611973938
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The Defocusing Nonlinear Schrodinger Equation: From Dark Solitons to Vortices and Vortex Rings

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Description for The Defocusing Nonlinear Schrodinger Equation: From Dark Solitons to Vortices and Vortex Rings Paperback. A study that summarizes state-of-the-art knowledge of Bose-Einstein condensates and related nonlinear Schrodinger-type models. Num Pages: 446 pages. BIC Classification: PBWR; PHDF. Category: (U) Tertiary Education (US: College). Dimension: 181 x 291 x 28. Weight in Grams: 916.
Bose-Einstein condensation is a phase transition in which a fraction of particles of a boson gas condenses into the same quantum state known as the Bose-Einstein condensate (BEC). This book, a broad study of nonlinear excitations in self-defocusing nonlinear media, presents a wide array of findings in the realm of BECs and on the nonlinear Schrödinger-type models that arise therein. It summarizes state-of-the-art knowledge on the defocusing nonlinear Schrödinger-type models in a single volume and contains a wealth of resources, including over 800 references to relevant articles and monographs and a meticulous index for ease of navigation. This book is ... Read more

Product Details

Format
Paperback
Publication date
2015
Publisher
SIAM - Society for Industrial & Applied Mathematics
Condition
New
Number of Pages
446
Place of Publication
New York, United States
ISBN
9781611973938
SKU
V9781611973938
Shipping Time
Usually ships in 7 to 11 working days
Ref
99-36

About P. G. Kevrekidis, D. J. Frantzeskakis, Ricardo Carretero-Gonzalez
P. G. Kevrekidis is a Professor at the University of Massachusetts, Amherst. He has authored over 450 publications and co-authored/edited five books. He is a Fellow of the APS and a Stanislaw M. Ulam Fellow at the Los Alamos National Laboratory, and he is a recipient of a Humboldt Fellowship, an NSF-CAREER award, the J. D. Crawford Prize in Dynamical ... Read more

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