Applied and Computational Mathematics (ACM)

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



2021

4667.

Küng, Robin; Pausch, Tobias; Rasch, Dustin; Göstl, Robert; Schmidt, Bernd M.
Mechanochemische Freisetzung nichtkovalent gebundener Gäste aus einem mit Polymerketten dekorierten supramolekularen Käfig
Angewandte Chemie, 133 (24) :13738--13742
Juni 2021
ISSN: 1521-3757

4666.

Baumann, Christoph; Stratigaki, Maria; Centeno, Silvia P.; Göstl, Robert
Mehrfarbige Mechanofluorophore für die quantitative Anzeige kovalenter Bindungsbrüche in Polymeren
Angewandte Chemie, 133 (24) :13398--13404
Juni 2021
ISSN: 1521-3757

4665.

Baumann, Christoph; Stratigaki, Maria; Centeno, Silvia P.; Göstl, Robert
Multicolor Mechanofluorophores for the Quantitative Detection of Covalent Bond Scission in Polymers
Angewandte Chemie International Edition, 60 (24) :13287--13293
Juni 2021
ISSN: 1521-3773

4664.

Grandrath, Rebecca
Brennstoffzell-Systeme mit Fokus auf biologischen Brennstoffzellen: Entwicklung und Optimierung von schulgeeigneten Experimenten, Konzepten und Medien. Dissertation.
Bergische Universität Wuppertal
Juni 2021

4663.

[german] Grandrath, Rebecca; Bohrmann-Linde, Claudia
Experimentieren mit interaktiven E-Books zu mikrobiellen Brennstoffzellen - Lerneinheiten für die Sekundarstufen I und II
MNU, 74 (3) :235-240
Juni 2021

4662.

Tausch, Michael W.; Bohrmann-Linde, Claudia
Nachhaltige Chemie mit Licht - Experimentelle Zugänge in digitalen Medien
CHEMKON, 28 (4) :147--154
Juni 2021

4661.

Zang, M.; Haussmann, N.; Stroka, S.; Mease, R.; Clemens, M.; Burkert, A.; Popp, A.; Schmuelling, B.
Personenschutz bei induktivem Laden von Fahrzeugbatterien -- Ansätze zur praktikablen Echtzeitbestimmung der magneto-quasistatischen Körperexposition
Wissenschaftsforum Mobilität, Duisburg, 17.06.2021. Full paper submitted, 2021.
Juni 2021

4660.

Göstl, Robert
Machen, zerstören, besser machen
Nachrichten aus der Chemie, 69 (5) :78--79
Mai 2021
ISSN: 1868-0054

4659.

[german] Zeller, Diana; Gökkus, Yasemin; Kremer, Richard; Bohrmann-Linde, Claudia
H5P-Videos in der chemiedidaktischen Lehre
CHEMKON, 28 (6) :245-248
Mai 2021

4658.

[english] Hoffmann, Heiko; Tausch, Michael W.
Intermolecular Photoredox Coupling: Alternative to Norrish Type II Reaction and Yang Cyclization in Ketones with γ-C-Bonds
European Journal of Organic Chemistry
Mai 2021

4657.

[german] Zeller, Diana; Grandrath, Rebecca; Bohrmann-Linde, Claudia
Digitale Lehr- und Lerntools für den Chemieunterricht mithilfe von Prezi und E-Books. Teil 3.
Chemie & Schule, 36 (2) :9-13
April 2021

4656.

Shi, Zhiyuan; Song, Qingchuan; Göstl, Robert; Herrmann, Andreas
Mechanochemical activation of disulfide-based multifunctional polymers for theranostic drug release
Chemical Science, 12 (5) :1668--1674
Februar 2021
ISSN: 2041-6539

4655.

Sun, Jing; Ma, Chao; Maity, Sourav; Wang, Fan; Zhou, Yu; Portale, Giuseppe; Göstl, Robert; Roos, Wouter H.; Zhang, Hongjie; Liu, Kai; Herrmann, Andreas
Reversibly Photo-Modulating Mechanical Stiffness and Toughness of Bioengineered Protein Fibers
Angewandte Chemie International Edition, 133 (6) :3259--3265
Februar 2021
ISSN: 1521-3757

4654.

Huo, Shuaidong; Zhao, Pengkun; Shi, Zhiyuan; Zou, Miancheng; Yang, Xintong; Warszawik, Eliza; Loznik, Mark; Göstl, Robert; Herrmann, Andreas
Mechanochemical bond scission for the activation of drugs
Nature Chemistry, 13 (2) :131--139
Februar 2021
ISSN: 1755-4349

4653.

Zhou, Yu; Huo, Shuaidong; Loznik, Mark; Göstl, Robert; Boersma, Arnold J.; Herrmann, Andreas
Controlling Optical and Catalytic Activity of Genetically Engineered Proteins by Ultrasound
Angewandte Chemie International Edition, 60 (3) :1493--1497
Januar 2021
ISSN: 1521-3773

4652.

Zhou, Yu; Huo, Shuaidong; Loznik, Mark; Göstl, Robert; Boersma, Arnold J.; Herrmann, Andreas
Kontrolle über die optische und katalytische Aktivität gentechnisch hergestellter Proteine mit Ultraschall
Angewandte Chemie, 133 (3) :1515--1519
Januar 2021
ISSN: 1521-3757

4651.

Bannenberg, MWFM; Ciccazzo, A
A Combination of Model Order Reduction and Multirate Techniques for Coupled Dynamical Systems
Scientific Computing in Electrical Engineering: SCEE 2020, Eindhoven, The Netherlands, February 2020, Seite 191–199
Herausgeber: Springer International Publishing
2021

4650.

Bannenberg, MWFM; Ciccazzo, A
A Combination of Model Order Reduction and Multirate Techniques for Coupled Dynamical Systems
Scientific Computing in Electrical Engineering: SCEE 2020, Eindhoven, The Netherlands, February 2020
Seite 191--199
Herausgeber: Springer International Publishing Cham
2021
191--199

4649.

Bannenberg, MWFM; Ciccazzo, A
A Combination of Model Order Reduction and Multirate Techniques for Coupled Dynamical Systems
Scientific Computing in Electrical Engineering: SCEE 2020, Eindhoven, The Netherlands, February 2020, Seite 191–199
Herausgeber: Springer International Publishing
2021

4648.

Pauly, Dirk; Skrepek, Nathanael
A Compactness Result for the div-curl System with Inhomogeneous Mixed Boundary Conditions for Bounded Lipschitz Domains and Some Applications
2021

4647.

Güttel, Stefan; Schweitzer, Marcel
A comparison of limited-memory Krylov methods for Stieltjes functions of Hermitian matrices
SIAM J. Matrix Anal. Appl., 42 (1) :83-107
2021

4646.

Güttel, Stefan; Schweitzer, Marcel
A comparison of limited-memory Krylov methods for Stieltjes functions of Hermitian matrices
SIAM J. Matrix Anal. Appl., 42 (1) :83-107
2021

4645.

Güttel, Stefan; Schweitzer, Marcel
A comparison of limited-memory Krylov methods for Stieltjes functions of Hermitian matrices
SIAM J. Matrix Anal. Appl., 42 (1) :83-107
2021

4644.

Edeko, Nikolai; Haase, Markus; Kreidler, Henrik
A Decomposition Theorem for Unitary Group Representations on Kaplansky-Hilbert Modules and the Furstenberg-Zimmer Structure Theorem
2021

4643.

Clevenhaus, Anna; Totzeck, Claudia; Ehrhardt, Matthias
A gradient descent algorithm for the Heston model
Preprint IMACM
2021
Herausgeber: Bergische Universität Wuppertal