Global classical solutions to a non-isothermal dynamical ginzburg-landau model in superconductivity
Author:
Affiliation:
1. a Institute of Mathematics, Academia Sinica, Beijing, PR , 100080 , China
2. b Lehrstuhl für Angewandte Mathematik , Technische Universitat München , Dachauerstr. 9a, Miinchen , Germany , 80335
Publisher
Informa UK Limited
Subject
Control and Optimization,Computer Science Applications,Signal Processing,Analysis
Link
https://www.tandfonline.com/doi/pdf/10.1080/01630569708816800
Reference8 articles.
1. Hysteresis and Phase Transitions
2. Chen , Z. Hoffmann , K.H. Griebei , M. and Zenger , C. 1998. “Numerical simulations of dynamical Ginzburg-Landau vortices in superconductivity., Numerical Simulation in Science and Engineering. Notes on Numerical Fluid Mechanics”. Vol. 48, 31–38. Vieweg, Braunschweig/Wiesbaden
3. Finite Element Methods for Navier-Stokes Equations
4. Ladyzhenskaya , O.A. Solonnikov , V.A. and Uralceva , N.N. 1968. “Linear and Quasilinear Equations of Parabolic Type”. Providence: American Mathematical Society, $cty:Providence.
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3. Global existence of strong solutions to a time-dependent 3D Ginzburg-Landau model for superconductivity with partial viscous terms;Mathematische Nachrichten;2013-09-19
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