Applied and Computational Mathematics (ACM)

Finance

The famous Black-Scholes equation is an effective model for option pricing. It was named after the pioneers Black, Scholes and Merton who suggested it 1973.

In this research field our aim is the development of effective numerical schemes for solving linear and nonlinear problems arising in the mathematical theory of derivative pricing models.

An option is the right (not the duty) to buy (`call option') or to sell (`put option') an asset (typically a stock or a parcel of shares of a company) for a price E by the expiry date T. European options can only be exercised at the expiration date T. For American options exercise is permitted at any time until the expiry date. The standard approach for the scalar Black-Scholes equation for European (American) options results after a standard transformation in a diffusion equation posed on an bounded (unbounded) domain.

Another problem arises when considering American options (most of the options on stocks are American style). Then one has to compute numerically the solution on a semi-unbounded domain with a free boundary. Usually finite differences or finite elements are used to discretize the equation and artificial boundary conditions are introduced in order to confine the computational domain.

In this research field we want to design and analyze new efficient and robust numerical methods for the solution of highly nonlinear option pricing problems. Doing so, we have to solve adequately the problem of unbounded spatial domains by introducing artificial boundary conditions and show how to incorporate them in a high-order time splitting method.

Nonlinear Black-Scholes equations have been increasingly attracting interest over the last two decades, since they provide more accurate values than the classical linear model by taking into account more realistic assumptions, such as transaction costs, risks from an unprotected portfolio, large investor's preferences or illiquid markets, which may have an impact on the stock price, the volatility, the drift and the option price itself.



Special Interests

Publications



2021

4542.

Tovar, Carmen M.; Haack, Alexander; Barnes, Ian; Bejan, Iustinian Gabriel; Wiesen, Peter
Experimental and theoretical study of the reactivity of a series of epoxides with chlorine atoms at 298 K
Physical Chemistry Chemical Physics, 23 (9) :5176-5186
2021

4541.

Tovar, Carmen M.; Haack, Alexander; Barnes, Ian; Bejan, Iustinian Gabriel; Wiesen, Peter
Experimental and theoretical study of the reactivity of a series of epoxides with chlorine atoms at 298 K
Physical Chemistry Chemical Physics, 23 (9) :5176-5186
2021

4540.

Grandrath, Rebecca; Bohrmann-Linde, Claudia
Experimentalkurs zu Biologischen Brennstoffzellen. Begleitendes E-Book für die Sekundarstufe II [Schülerversion]
2021

4539.

Grandrath, Rebecca; Bohrmann-Linde, Claudia
Experimentalkurs zu Biologischen Brennstoffzellen.Begleitendes E-Book für die Sekundarstufe II [Lehrerversion]
2021

4538.


Explicit high order one-step methods for decoupled forward backward stochastic differential equations
Adv. Appl. Math. Mech, 13 :1293--1317
2021

4537.

Aab, Alexander; others
Extraction of the muon signals recorded with the surface detector of the Pierre Auger Observatory using recurrent neural networks
JINST, 16 (07) :P07016
2021

4536.

Ferrari, Paola; Garoni, Carlo; Serra-Capizzano, Stefano
Fast parallel solver for the space-time IgA-DG discretization of the diffusion equation
J. Sci. Comput., 89 (1) :Paper No. 20, 21
2021

4535.

Ferrari, Paola; Garoni, Carlo; Serra-Capizzano, Stefano
Fast parallel solver for the space-time IgA-DG discretization of the diffusion equation
J. Sci. Comput., 89 (1) :Paper No. 20, 21
2021

4534.

[german] Bohrmann-Linde, Claudia; Meuter, Nico; Kremer, Richard; Pereira Vaz, Nuno; Venzlaff, Julian
Forschung trifft Schule - Chemie-Labothek als innovatives, vernetzendes Format
Lehrkräftebildung neu gedacht
Seite 108-112
Herausgeber: Marcus Kubsch, Stefan Sorge, Julia Arnold, Nicole Graulich, Waxmann, Münster
2021
108-112

4533.

Grira, A.; Kalalian, C.; Illmann, J.N.; Patroescu-Klotz, I.; El Dib, G.; Coddeville, P.; Canosa, A.; Coeur, C.; Wiesen, P.; Roth, E.; Chakir, A.; Tomas, A.
Gas-phase ozonolysis of trans-2-hexenal: Kinetics, products, mechanism and SOA formation
Atmospheric Environment, 253 :118344
Mai 2021
ISSN: 13522310

4532.

Illmann, Jan Niklas; Patroescu-Klotz, Iulia; Wiesen, Peter
Gas-phase reactivity of acyclic α,β-unsaturated carbonyls towards ozone
Physical Chemistry Chemical Physics, 23 (5) :3455--3466
2021
ISSN: 1463-9076, 1463-9084

4531.

Wandelt, Mich{\`e}le; Günther, Michael; Muniz, Michelle
Geometric integration on Lie groups using the Cayley transform with focus on lattice QCD
Journal of Computational and Applied Mathematics, 387 :112495
2021
Herausgeber: North-Holland

4530.

Backhaus, Jan; Bolten, Matthias; Tanil Doganay, Onur; Ehrhardt, Matthias; Engel, Benedikt; Frey, Christian; Gottschalk, Hanno; Günther, Michael; Hahn, Camilla; Jäschke, Jens; others
GivEn - Shape optimization for gas turbines in volatile energy networks
Mathematical Modeling, Simulation and Optimization for Power Engineering and Management :71–106
2021
Herausgeber: Springer Cham

4529.

Backhaus, J.; Bolten, Matthias; Doganay, O. T.; Ehrhardt, M.; Engel, B.; Frey, Ch.; Gottschalk, H.; Günther, M.; Hahn, C.; Jäschke, J.; Jaksch, P.; Klamroth, K.; Liefke, A.; Luft, D.; Mäde, L.; Marciniak, V.; Reese, M.; Schultes, J.; Schulz, V.
GivEn - Shape Optimization for Gas Turbines in Volatile Energy Networks
In S. Göttlich and M. Herty and A. Milde, Editor, Mathematical Modeling, Simulation and Optimization for Power Engineering and ManagementBand34ausMathematics in Industry
In S. Göttlich and M. Herty and A. Milde, Editor
Herausgeber: Springer, Cham
2021

4528.

Backhaus, J.; Bolten, M.; Doganay, O. T.; Ehrhardt, M.; Engel, B.; Frey, Ch.; Gottschalk, H.; Günther, M.; Hahn, C.; Jäschke, J.; Jaksch, P.; Klamroth, K.; Liefke, A.; Luft, D.; Mäde, L.; Marciniak, V.; Reese, M.; Schultes, J.; Schulz, V.
GivEn - Shape Optimization for Gas Turbines in Volatile Energy Networks
In S. Göttlich and M. Herty and A. Milde, Editor, Mathematical Modeling, Simulation and Optimization for Power Engineering and ManagementBand34ausMathematics in Industry
In S. Göttlich and M. Herty and A. Milde, Editor
Herausgeber: Springer, Cham
2021

4527.

Backhaus, Jan; Bolten, Matthias; Tanil Doganay, Onur; Ehrhardt, Matthias; Engel, Benedikt; Frey, Christian; Gottschalk, Hanno; Günther, Michael; Hahn, Camilla; Jäschke, Jens; others
GivEn - Shape optimization for gas turbines in volatile energy networks
Mathematical Modeling, Simulation and Optimization for Power Engineering and Management :71–106
2021
Herausgeber: Springer Cham

4526.

Backhaus, Jan; Bolten, Matthias; Tanil Doganay, Onur; Ehrhardt, Matthias; Engel, Benedikt; Frey, Christian; Gottschalk, Hanno; Günther, Michael; Hahn, Camilla; Jäschke, Jens; others
GivEn - Shape optimization for gas turbines in volatile energy networks
Mathematical Modeling, Simulation and Optimization for Power Engineering and Management :71–106
2021
Herausgeber: Springer Cham

4525.

Backhaus, J.; Bolten, M.; Doganay, O.T.; Ehrhardt, M.; Engel, B.; Frey, C.; Gottschalk, H.; Günther, M.; Hahn, C.; Jäschcke, J.; Jaksch, P.; Klamroth, K.; Liefke, A.; Luft, D.; Mäde, L.; Marciniak, V.; Reese, M.; Schultes, J.; Schulz, V.; Schmitz, S.; Steiner, J.; Stiglmayr, M.
GivEn - Shape Optimization for Gas Turbines in Volatile Energy Networks
In S. Goettlich, M. Herty and A. Milde, Editor, Mathematical MSO for Power Engineering and Management aus Mathematics in Industry
Herausgeber: Springer Berlin/Heidelberg
2021

4524.

Backhaus, J.; Bolten, M.; Doganay, O. T.; Ehrhardt, M.; Engel, B.; Frey, Ch.; Gottschalk, H.; Günther, M.; Hahn, C.; Jäschke, J.; Jaksch, P.; Klamroth, K.; Liefke, A.; Luft, D.; Mäde, L.; Marciniak, V.; Reese, M.; Schultes, J.; Schulz, V.
GivEn - Shape Optimization for Gas Turbines in Volatile Energy Networks
In S. Göttlich and M. Herty and A. Milde, Editor, Mathematical Modeling, Simulation and Optimization for Power Engineering and ManagementBand34ausMathematics in Industry
In S. Göttlich and M. Herty and A. Milde, Editor
Herausgeber: Springer, Cham
2021

4523.

Backhaus, Jan; Bolten, Matthias; Tanil Doganay, Onur; Ehrhardt, Matthias; Engel, Benedikt; Frey, Christian; Gottschalk, Hanno; Günther, Michael; Hahn, Camilla; Jäschke, Jens; others
GivEn—Shape optimization for gas turbines in volatile energy networks
Mathematical Modeling, Simulation and Optimization for Power Engineering and Management :71--106
2021
Herausgeber: Springer International Publishing

4522.

Reininghaus, Maximilian; others
GPU Accelerated optical light propagation in CORSIKA 8
PoS, ICRC2021 :705
2021

4521.

Kroflič, Ana; Anders, Janine; Drventić, Ivana; Mettke, Peter; Böge, Olaf; Mutzel, Anke; Kleffmann, Jörg; Herrmann, Hartmut
Guaiacol Nitration in a Simulated Atmospheric Aerosol with an Emphasis on Atmospheric Nitrophenol Formation Mechanisms
ACS Earth and Space Chemistry, 5 (5) :1083--1093
Mai 2021
ISSN: 2472-3452, 2472-3452

4520.

Alves, Antonio Augusto Alves; others
Hadron cascades in CORSIKA 8
PoS, ICRC2021 :474
2021

4519.

Teng, Long; Zhao, Weidong
High-order combined multi-step scheme for solving forward backward stochastic differential equations
Journal of Scientific Computing, 87 (3) :1–25
2021
Herausgeber: Springer New York

4518.

Teng, Long; Zhao, Weidong
High-order combined multi-step scheme for solving forward backward stochastic differential equations
JSC, 87 (81)
2021