Prof. Dr. Christoph Pflaum



Organisationseinheit


Professur für Informatik (Numerische Simulation mit Höchstleistungsrechnern)



Projektleitung

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Präzise Simulation von Festkörperverstärker
Prof. Dr. Christoph Pflaum
(01.01.2016 - 31.12.2019)

SparseGrid: Lösung partieller Differentialgleichungen mit dünnen Gittern
Prof. Dr. Christoph Pflaum
(02.01.2015 - 06.12.2019)

Einsatz Lichtbrechender Bauteile zur Dosisreduktion bei medizinischem Phasenkontrast-Röntgen
Prof. Dr. Christoph Pflaum
(01.08.2014 - 31.12.2019)

LIST - Großflächiger Lichteinfang in der Silizium-basierten Dünnschichtsolarzellen-Technologie - Teilprojekt Simulation
Prof. Dr. Christoph Pflaum
(01.06.2012 - 31.05.2014)

SiSoFlex: Silizium-Solarzellen auf flexiblen Substraten
Prof. Dr. Christoph Pflaum
(01.01.2012 - 31.03.2015)


Publikationen (Download BibTeX)

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Hartmann, R., & Pflaum, C. (2018). Efficient Ritz-Galerkin Discretization of PDEs with Variable Coefficients in arbitrary Dimensions using Sparse Grids. In PAMM. Weimar: Online: Wiley.
Springer, R., Alexeev, I., Heberle, J., & Pflaum, C. (2018). Simulation of energy buildups in solid-state regenerative amplifiers for 2-μm emitting lasers. In W. Andrew Clarkson, Ramesh K. Shori (Eds.), Proc. SPIE 10511, Solid State Lasers XXVII: Technology and Devices, 1051106 (pp. 1051106-1 - 1051106-10). San Francisco, California, United States, US: SPIE Digital Library.
Hartmann, R., & Pflaum, C. (2017). A prewavelet-based algorithm for the solution of second-order elliptic differential equations with variable coefficients on sparse grids. Numerical Algorithms, 1-28. https://dx.doi.org/10.1007/s11075-017-0407-9
Pflaum, C., & Hartmann, R. (2016). A Sparse Grid Discretization of the Helmholtz Equation with Variable Coefficients in High Dimensions. SIAM Journal on Numerical Analysis, 54(4), 2707–2727. https://dx.doi.org/10.1137/15M101508X
Abebe, B.T., Pflaum, C., & Geißendörfer, S. (2016). Fourier transform based interface roughness analysis for flexible thin-film silicon solar cells. Journal of Photonics for Energy, 6(2). https://dx.doi.org/10.1117/1.JPE.6.025505
Pflaum, C., & Rahimi, Z. (2016). Modeling and simulation of ultra-short pulse amplification. In Solid State Lasers XXV: Technology and Devices. San Francisco: USA, Bellingham: SPIE.
Yan, S., Pflaum, C., Xu, X., & Zhuoxiang, R. (2016). Numerical Analysis of Discrete Geometric Method on Plasmonic Structures. IEEE Transactions on Magnetics, PP(99), 1-4. https://dx.doi.org/10.1109/TMAG.2015.2490278
Hornich, J., Pflaum, C., Brabec, C., & Forberich, K. (2016). Numerical study of plasmonic absorption enhancement in semiconductor absorbers by metallic nanoparticles. Journal of Applied Physics, 120(11). https://dx.doi.org/10.1063/1.4962459
Pflaum, C., Alexeev, I., Ugurlu, A.D., & Seerdar, G. (2016). Ultrafast (picosecond) laser oscillator for educational use. European Journal of Physics, 37, 1-11. https://dx.doi.org/10.1088/0143-0807/37/4/045301
Yan, S., Pflaum, C., Xu, X., & Ren, Z. (2015). Error Estimation of Discrete Geometry Method on Plasmonic Structures. In Proceedings of Compumag 2015 (pp. 1-2). Montreal, Quebec, Canada, CA: Montreal, Quebec, Canada: IEEE.

Zuletzt aktualisiert 2017-08-12 um 09:47