Artificial Boundary Conditions
When computing numerically the solution of a partial differential equation in an unbounded domain usually artificial boundaries are introduced to limit the computational domain. Special boundary conditions are derived at this artificial boundaries to approximate the exact whole-space solution. If the solution of the problem on the bounded domain is equal to the whole-space solution (restricted to the computational domain) these boundary conditions are called transparent boundary conditions (TBCs).
We are concerned with TBCs for general Schrödinger-type pseudo-differential equations arising from `parabolic' equation (PE) models which have been widely used for one-way wave propagation problems in various application areas, e.g. (underwater) acoustics, seismology, optics and plasma physics. As a special case the Schrödinger equation of quantum mechanics is included.
Existing discretizations of these TBCs induce numerical reflections at this artificial boundary and also may destroy the stability of the used finite difference method. These problems do not occur when using a so-called discrete TBC which is derived from the fully discretized whole-space problem. This discrete TBC is reflection-free and conserves the stability properties of the whole-space scheme. We point out that the superiority of discrete TBCs over other discretizations of TBCs is not restricted to the presented special types of partial differential equations or to our particular interior discretization scheme.
Another problem is the high numerical effort. Since the discrete TBC includes a convolution with respect to time with a weakly decaying kernel, its numerical evaluation becomes very costly for long-time simulations. As a remedy we construct new approximative TBCs involving exponential sums as an approximation to the convolution kernel. This special approximation enables us to use a fast evaluation of the convolution type boundary condition.
Finally, to illustrate the broad range of applicability of our approach we derived efficient discrete artificial boundary conditions for the Black-Scholes equation of American options.
Software
Our approach was implemented by C.A. Moyer in the QMTools software package for quantum mechanical applications.
Publications
- 2019
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Bolten, M.; Hahne, J.
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PAMM, 19 :e201900373
20194166.
Lübke, Steffen
Anreicherung der Pyrolyseprodukte von Mikroplastik auf Carbotrap{\circledR} 300 und Analytik mittels GCxGC/MS
20194165.
Kruse, Thomas; Urusov, Mikhail
Approximating exit times of continuous Markov processes
arXiv preprint arXiv:1904.04344
20194164.
Stiglmayr, Michael; Görtz, Simon; Klamroth, Kathrin
Assigning Students to Schools for an Internship
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In Fortz B. and Labbé M., Editor
Herausgeber: Springer, Cham
20194163.
Glück, Jochen; Haase, Markus
Asymptotics of operator semigroups via the semigroup at infinity
Positivity and noncommutative analysis aus Trends Math.
Seite 167--203
Herausgeber: Birkhäuser/Springer, Cham
2019
167--2034162.
Sezer, Ali Devin; Kruse, Thomas; Popier, Alexandre
Backward stochastic differential equations with non-Markovian singular terminal values
Stochastics and Dynamics, 19 (02) :1950006
2019
Herausgeber: World Scientific4161.
Sezer, Ali Devin; Kruse, Thomas; Popier, Alexandre
Backward stochastic differential equations with non-Markovian singular terminal values
Stochastics and Dynamics, 19 (02) :1950006
2019
Herausgeber: World Scientific Publishing4160.
Zaspel, Peter; Huang, Bing; Harbrecht, Helmut; Lilienfeld, O. Anatole
Boosting Quantum Machine Learning Models with a Multilevel Combination Technique: Pople Diagrams Revisited
J. Chem. Theory Comput., 15 (3) :1546-1559
20194159.
Bohrmann-Linde, Claudia; Kleefeldt, Simon
Can You See the Heat? - Using a Thermal Imaging Camera in the Chemistry Classroom
World Journal of Chemical Education, 7 (2) :179-184
20194158.
Rivela, Cynthia B.; Tovar, Carmen M.; Teruel, Mariano A.; Barnes, Ian; Wiesen, Peter; Blanco, María B.
CFCs replacements: Reactivity and atmospheric lifetimes of a series of Hydrofluoroolefins towards OH radicals and Cl atoms
Chemical Physics Letters, 714 :190-196
2019
Herausgeber: North-Holland4157.
Rivela, Cynthia B.; Tovar, Carmen M.; Teruel, Mariano A.; Barnes, Ian; Wiesen, Peter; Blanco, Mar{í}a B.
CFCs replacements: Reactivity and atmospheric lifetimes of a series of Hydrofluoroolefins towards OH radicals and Cl atoms
Chemical Physics Letters, 714 :190-196
2019
Herausgeber: North-Holland4156.
Rivela, Cynthia B.; Tovar, Carmen M.; Teruel, Mariano A.; Barnes, Ian; Wiesen, Peter; Blanco, Mar{í}a B.
CFCs replacements: Reactivity and atmospheric lifetimes of a series of Hydrofluoroolefins towards OH radicals and Cl atoms
Chemical Physics Letters, 714 :190-196
2019
Herausgeber: North-Holland4155.
Bohrmann-Linde, Claudia; Kröger, Simone; Siehr, Ilona
Chemie 1 - Gymnasium G9 NRW
Herausgeber: C.C.Buchner
20194154.
Tausch, Michael W.; Meuter, Nico
Chemie mit Licht4153.
Bock, Stefan; Klamroth, Kathrin
Combining Traveling Salesman and Traveling Repairman Problems: A multi-objective approach based on multiple scenarios
Computers and Operations Research, 112 :104766
20194152.
Treibert, Sarah; Brunner, Helmut; Ehrhardt, Matthias
Compartment models for vaccine effectiveness and non-specific effects for Tuberculosis
Mathematical Biosciences and Engineering, 16 (6) :7250–7298
2019
Herausgeber: AIMS Press4151.
Treibert, Sarah; Brunner, Helmut; Ehrhardt, Matthias
Compartment models for vaccine effectiveness and non-specific effects for Tuberculosis
Mathematical Biosciences and Engineering, 16 (6) :7250--7298
20194150.
Treibert, Sarah; Brunner, Helmut; Ehrhardt, Matthias
Compartment models for vaccine effectiveness and non-specific effects for Tuberculosis
Mathematical Biosciences and Engineering, 16 (6) :7250–7298
2019
Herausgeber: AIMS Press4149.
Gerlach, Moritz; Glück, Jochen
Convergence of positive operator semigroups
Trans. Amer. Math. Soc., 372 (9) :6603--6627
20194148.
Kienitz, Joerg; Acar, Sarp Kaya; Liang, Qian; Nowaczyk, Nikolai
Deep option pricing - Term structure models
SSRN Electronic Journal
2019
Herausgeber: Elsevier
ISSN: 1556-50684147.
Kleefeldt, Simon; Bohrmann-Linde, Claudia
Der Wärme auf der Spur [Lehrerband]
20194146.
Kleefeldt, Simon; Bohrmann-Linde, Claudia
Der Wärme auf der Spur [Schülerband]
20194145.
[german] Grandrath, Rebecca; Bohrmann-Linde, Claudia
Die biologische Brennstoffzelle im Chemieunterricht - Einfache Experimente mit kostengünstigen Materialien
CHEMKON, 26 (5) :196-202
2019
Herausgeber: Wiley4144.
Cornelius, Soraya
Die perfekte Winterjacke. Ein praxisnahes Unterrichtsbeispiel zum Thema Wärmelehre
Science on Stage Deutschland e.V.
20194143.
Lang, Bruno; Müller, Dorothee; Arndt, Holger; Bartel, Andreas; Blankenagel, Karsten; Gottschalk, Hanno; Günther, Michael; Humbert, Ludger; Jacob, Birgit; Klamroth, Kathrin; Rüdiger, Barbara; Späth, Britta; Stiglmayr, Michael; Wyss, Christian
Die Stimmen der Fächer hören
In Michaela Heer and Ulrich Heinen, Editor, Die Stimmen der Fächer hören
Kapitel Fachlichkeitsaspekte im Mathematik- und Informatikstudium, Seite 413--428
Herausgeber: Schoeningh Ferdinand GmbH
Oktober 2019
413--428