2026· International Journal of Numerical Methods and Applications· Vol 26, pp. 581-610· 0 citations
Abstract
In this work, we study the mathematical properties of a Bloch-type model, such as energy dissipation and exponential decay, incorporating nonlinear effects including Coulomb interaction. We show that the model is globally well-posed. Furthermore, the existence of an equilibrium state is established in the case of a reduced threelevel energy system. The equilibrium populations were computed numerically and were found to satisfy the governing system of \footnotetext{ } equations with a residual of order \(10^{-12}\). The impact of the Coulomb interaction terms was quantified by measuring the differences between the computed equilibrium populations and the corresponding Gibbs states. These differences were observed to be of the order of \(10^{-3}\). All equilibrium populations belong to the interval [0, 1]. The reduced three-level model is then discretized using an exponential Euler scheme. Finally, numerical simulations are carried out to evaluate the effects of the Coulomb terms. Numerical simulations reveal that the contributions of the Coulomb terms can exceed \(10^{-1}\) for the populations, highlighting their significant influence on the system dynamics.
Context and relevance. Modelling the dynamics of the order parameter in nonlinear media with inertial effects is of interest for condensed matter physics and the theory of phase transitions. Hyperbolic generalisations of the Landau–Khalatnikov equation make it possible to account for wave mechanisms of energy transport...
L. Moroz, O. S. Doroshkov· Modelling and Data Analysis· 0 citations
We study a Kirchhoff-type nonlinear integro-differential equation in two spatial dimensions whose coefficients are allowed to depend on time, and we construct conservative discretizations in time for the associated initial--boundary value problem. We consider two symmetric three-layer schemes of Crank--Nicolson type, a...
Felix Krumbiegel, J. Rogava, Andreas Rupp et al.· 0 citations
This article is devoted to the mathematical analysis of a new Navier--Stokes-$\alpha$ model involving a nonlinear filter equation. The resulting model is governed by a doubly nonlinear parabolic--elliptic coupled system. In our previous work [M.~F.~Cortez and O.~Jarr\'in, \emph{Mathematical study of a new Navier--Stoke...
The purpose of this article is to introduce the concept of possible implementation of continuum mechanics models based on kinetic theory. The fundamental equation of rarefied gas dynamics – the Boltzmann equation – is an integro-differential equation, extremely complex when its actual resolution is necessary. The mismatc...
E. Radkevich, O. Vasilieva· Mathematical notes of NEFU· 0 citations
The paper presents a 3D numerical model of plasma in which a fully implicit PIC method with exact conservation of global energy and local charge is generalized to the electromagnetic case. This opens the possibility of simulating plasma equilibria with a high (up to an extreme) ratio of plasma pressure to magnetic fiel...
The aim of this study is to comprehensively analyze the complex dynamics of coupled oscillator systems utilizing the analytical Lagrangian formalism paired with advanced computational numerical methods in the Python programming environment. To achieve this objective, a quantitative computational research design was rig...
Munzir Absa· Journal of Scientific Resear...· 0 citations
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