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JOURNALS // Program Systems: Theory and Applications // Archive

Program Systems: Theory and Applications, 2023 Volume 14, Issue 2, Pages 27–47 (Mi ps421)

This article is cited in 1 paper

Mathematic Modeling

Simulation the behavior of a two-level quantum system using scalable regular grids

A. D. Panferov, N. V. Posnova, A. A. Ulyanova

Saratov State University, Saratov, Russia

Abstract: The paper demonstrates a method for constructing a grid with a changing scale for modeling the behavior of a two-level quantum system. The method was proposed and implemented in relation to the problem of reproducing the behavior of graphene in external electric fields using the quantum kinetic equation. A direct numerical solution of the kinetic equation makes it possible to accurately and completely reproduce the behavior of models of this type. But a large amount of computation is required for a good quality reproduction of the observed parameters. The complexity of the problem is directly proportional to the number of grid nodes in the two-dimensional space of states, in each of which a system of ordinary differential equations is solved to reproduce the evolution of the population of the upper energy level. The study of the behavior of the model made it possible to develop and implement an economical procedure for constructing a computational grid, which ensures the localization of the region of formation of excited states and exact reproduction of the observed process parameters. (In Russian).

Key words and phrases: numerical simulation, graphene, charge carrier distribution function, optimal choice of computational grid.

UDC: 519.688:519.876.5
BBK: 22.338

MSC: Primary 65M50; Secondary 81T10, 81T40

Received: 20.02.2023
Accepted: 04.06.2023

DOI: 10.25209/2079-3316-2023-14-2-27-47



© Steklov Math. Inst. of RAS, 2024