999 research outputs found
Minimax methods for finding multiple saddle critical points in Banach spaces and their applications
This dissertation was to study computational theory and methods for ?nding multiple saddle critical points in Banach spaces. Two local minimax methods were developed for this purpose. One was for unconstrained cases and the other was for constrained cases. First, two local minmax characterization of saddle critical points in Banach spaces were established. Based on these two local minmax characterizations, two local minimax algorithms were designed. Their ?ow charts were presented. Then convergence analysis of the algorithms were carried out. Under certain assumptions, a subsequence convergence and a point-to-set convergence were obtained. Furthermore, a relation between the convergence rates of the functional value sequence and corresponding gradient sequence was derived. Techniques to implement the algorithms were discussed. In numerical experiments, those techniques have been successfully implemented to solve for multiple solutions of several quasilinear elliptic boundary value problems and multiple eigenpairs of the well known nonlinear p-Laplacian operator. Numerical solutions were presented by their pro?les for visualization. Several interesting phenomena of the solutions of quasilinear elliptic boundary value problems and the eigenpairs of the p-Laplacian operator have been observed and are open for further investigation. As a generalization of the above results, nonsmooth critical points were considered for locally Lipschitz continuous functionals. A local minmax characterization of nonsmooth saddle critical points was also established. To establish its version in Banach spaces, a new notion, pseudo-generalized-gradient has to be introduced. Based on the characterization, a local minimax algorithm for ?nding multiple nonsmooth saddle critical points was proposed for further study
Langevin picture of anomalous diffusion processes in expanding medium
Expanding medium is very common in many different fields, such as biology and
cosmology. It brings a nonnegligible influence on particle's diffusion, which
is quite different from the effect of an external force field. The dynamic
mechanism of particle's motion in expanding medium has only been investigated
in the framework of continuous-time random walk. To focus on more diffusion
processes and physical observables, we build the Langevin picture of anomalous
diffusion in expanding medium, and conduct detailed analyses in the framework
of Langevin equation. With the help of a subordinator, both subdiffusion
process and superdiffusion process in expanding medium are discussed. We find
that the expanding medium with different changing rate (exponential form and
power-law form) leads to quite different diffusion phenomena. The particle's
intrinsic diffusion behavior also plays an important role. Our detailed
theoretical analyses and simulations present a panoramic view of investigating
anomalous diffusion in expanding medium under the framework of Langevin
equation.Comment: 14 pages, 7 figure
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