Back to Search
Start Over
On the convergence of Lawson methods for semilinear stiff problems
- Source :
- Numerische Mathematik, 145 (3), 553–580
- Publication Year :
- 2020
- Publisher :
- Springer Science and Business Media LLC, 2020.
-
Abstract
- Since their introduction in 1967, Lawson methods have achieved constant interest in the time discretization of evolution equations. The methods were originally devised for the numerical solution of stiff differential equations. Meanwhile, they constitute a well-established class of exponential integrators, which has turned out to be competitive for solving space discretizations of certain types of partial differential equations. The popularity of Lawson methods is in some contrast to the fact that they may have a bad convergence behaviour, since they do not satisfy any of the stiff order conditions. The aim of this paper is to explain this discrepancy. It is shown that non-stiff order conditions together with appropriate regularity assumptions imply high-order convergence of Lawson methods. Note, however, that the term regularity here includes the behaviour of the solution at the boundary. For instance, Lawson methods will behave well in the case of periodic boundary conditions, but they will show a dramatic order reduction for, e.g., Dirichlet boundary conditions. The precise regularity assumptions required for high-order convergence are worked out in this paper and related to the corresponding assumptions for splitting schemes. In contrast to previous work, the analysis is based on expansions of the exact and the numerical solution along the flow of the homogeneous problem. Numerical examples for the Schrödinger equation are included.
- Subjects :
- Partial differential equation
Discretization
Applied Mathematics
Numerical analysis
Boundary (topology)
020206 networking & telecommunications
010103 numerical & computational mathematics
02 engineering and technology
Exponential integrator
01 natural sciences
Stiff equation
Computational Mathematics
symbols.namesake
Dirichlet boundary condition
Convergence (routing)
0202 electrical engineering, electronic engineering, information engineering
symbols
Applied mathematics
ddc:510
0101 mathematics
Mathematics
Subjects
Details
- ISSN :
- 09453245 and 0029599X
- Volume :
- 145
- Database :
- OpenAIRE
- Journal :
- Numerische Mathematik
- Accession number :
- edsair.doi.dedup.....7f34f3a46e65180e9b27c2b4d1e617be