26,178 research outputs found
Quasinonlocal coupling of nonlocal diffusions
We developed a new self-adjoint, consistent, and stable coupling strategy for
nonlocal diffusion models, inspired by the quasinonlocal atomistic-to-continuum
method for crystalline solids. The proposed coupling model is coercive with
respect to the energy norms induced by the nonlocal diffusion kernels as well
as the norm, and it satisfies the maximum principle. A finite difference
approximation is used to discretize the coupled system, which inherits the
property from the continuous formulation. Furthermore, we design a numerical
example which shows the discrepancy between the fully nonlocal and fully local
diffusions, whereas the result of the coupled diffusion agrees with that of the
fully nonlocal diffusion.Comment: 28 pages, 3 figures, ams.or
Internal noise driven generalized Langevin equation from a nonlocal continuum model
Starting with a micropolar formulation, known to account for nonlocal
microstructural effects at the continuum level, a generalized Langevin equation
(GLE) for a particle, describing the predominant motion of a localized region
through a single displacement degree-of-freedom (DOF), is derived. The GLE
features a memory dependent multiplicative or internal noise, which appears
upon recognising that the micro-rotation variables possess randomness owing to
an uncertainty principle. Unlike its classical version, the new GLE
qualitatively reproduces the experimentally measured fluctuations in the
steady-state mean square displacement of scattering centers in a polyvinyl
alcohol slab. The origin of the fluctuations is traced to nonlocal spatial
interactions within the continuum. A constraint equation, similar to a
fluctuation dissipation theorem (FDT), is shown to statistically relate the
internal noise to the other parameters in the GLE
Testing Non-local Nucleon-Nucleon Interactions in the Four-Nucleon Systems
The Faddeev-Yakubovski equations are solved in configuration space for the -particle and n-H continuum states. We test the ability of nonlocal
nucleon-nucleon interaction models to describe 3N and 4N systems.Comment: 16 pages, 6 figure
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