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paul_ellinghaus [2018/07/18 11:32] – [Wigner-specific research] weinbubpaul_ellinghaus [2019/11/06 11:24] (current) – [Wigner-specific research] weinbub
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 ===== Wigner-specific research ===== ===== Wigner-specific research =====
 +(selection)
  
- +  * [[Mihail (Mixi) Nedjalkov]][[Paul Ellinghaus]], [[Josef Weinbub]]Toufik Sadi, Asen Asenov, [[Ivan Dimov]], and [[Siegfried Selberherr]], [[https://www.sciencedirect.com/science/article/pii/S0010465518300821?via%3Dihub|Stochastic Analysis of Surface Roughness Models in Quantum Wires]]CompPhys. Commun. **228**, 30 (2018) 
-M. Nedjalkov, J. Weinbub, PEllinghausS. Selberherr:"The Wigner equation in the presence of electromagnetic potentials"; Journal of Computational Electronics, (2015), doi: 10.1007/s10825-015-0732-y+  * [[Paul Ellinghaus]], [[Josef Weinbub]], [[Mihail (Mixi) Nedjalkov]] and [[Siegfried Selberherr]], [[https://onlinelibrary.wiley.com/doi/abs/10.1002/pssr.201700102|Analysis of Lense-Governed Wigner Signed Particle Quantum Dynamics]]Phys. Stat. Sol. RRL **11**, 1700102 (2017)
- +  * [[Paul Ellinghaus]][[http://www.iue.tuwien.ac.at/phd/ellinghaus/|Two-Dimensional Wigner Monte Carlo Simulation for Time-Resolved Quantum Transport with Scattering]], Doctoral dissertation, TU Wien (2016) 
-J. Weinbub, P. Ellinghaus, M. Nedjalkov"Domain Decomposition Strategies for the Two-Dimensional Wigner Monte Carlo Method"; Journal of Computational Electronics, (2015), doi: 10.1007/s10825-015-0730-0.  +  * [[Mihail (Mixi) Nedjalkov]], [[Josef Weinbub]], [[Paul Ellinghaus]], and [[Siegfried Selberherr]], [[https://link.springer.com/article/10.1007%2Fs10825-015-0732-y|The Wigner Equation in the Presence of Electromagnetic Potentials]], J. Comp. Electron. **14**, 888 (2015) 
- +  * [[Josef Weinbub]][[Paul Ellinghaus]]and [[Siegfried Selberherr]], [[https://link.springer.com/chapter/10.1007%2F978-3-319-26520-9_34|Parallelization of the Two-Dimensional Wigner Monte Carlo Method]], in: Large-Scale Scientific Computing, Lecture Notes in Computer Science **9374**309 (2015) 
-P. Ellinghaus, J. Weinbub, M. Nedjalkov, S. Selberherr, I. Dimov: "Distributed-memory parallelization of the Wigner Monte Carlo method using spatial domain decomposition", Journal of Computational Electronics, 14(2015), 151-162 doi: 10.1007/s10825-014-0635-3+  * [[Josef Weinbub]][[Paul Ellinghaus]], [[Mihail (Mixi) Nedjalkov]], [[https://link.springer.com/article/10.1007%2Fs10825-015-0730-0|Domain Decomposition Strategies for the Two-Dimensional Wigner Monte Carlo Method]], JCompElectron. **14**, 922 (2015) 
 +  * [[Paul Ellinghaus]][[Josef Weinbub]][[Mihail (Mixi) Nedjalkov]][[Siegfried Selberherr]]and [[Ivan Dimov]], [[https://link.springer.com/article/10.1007%2Fs10825-014-0635-3|Distributed-Memory Parallelization of the Wigner Monte Carlo Method Using Spatial Domain Decomposition]]J. Comp. Electron. **14**, 151 (2015) 
 +  * [[Paul Ellinghaus]][[Mihail (Mixi) Nedjalkov]], and [[Siegfried Selberherr]], [[https://link.springer.com/chapter/10.1007%2F978-3-319-15585-2_3|Optimized Particle Regeneration Scheme for the Wigner Monte Carlo Method]], in: Numerical Methods and Applications, Lecture Notes in Computer Science **8962**, 27 (2015) 
 +  * [[Johann Cervenka]], [[Paul Ellinghaus]], [[Mihail (Mixi) Nedjalkov]], [[https://link.springer.com/chapter/10.1007%2F978-3-319-15585-2_17|Deterministic Solution of the Discrete Wigner Equation]], in: Numerical Methods and Applications, Lecture Notes in Computer Science **8962**, 149 (2015 
 +  * [[Johann Cervenka]], [[Paul Ellinghaus]], [[Mihail (Mixi) Nedjalkov]], Erasmus Langer, [[https://link.springer.com/chapter/10.1007%2F978-3-319-26520-9_29|Optimization of the Deterministic Solution of the Discrete Wigner Equation]], in: large Scale Scientific Computing, Lecture Notes in Computer Science **9374**, 269 (2015)
 ===== Affiliation(s) ===== ===== Affiliation(s) =====
 Infineon, Munich, Germany Infineon, Munich, Germany
paul_ellinghaus.1531913521.txt.gz · Last modified: 2018/07/18 11:32 by weinbub

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