Semiconductor

Semiconductor devices are solid state bodies, whose electrical conductivity strongly depends on the temperature and other internal properties like the so-called doping. Depending on the temperature or other internal settigns, they can be regarded as insulator or conductor. (Physically speaken: Semiconductor materials have a band gap between.. and .. electron Volt)
This property makes them extremely useful in electronics, since this property can be easily employed to use them as switches. On nowadays computerchips and prozessors, millions of semiconductor devices (especially transistors) are included in an electronic circuit. In order to use common circuit simulation tools to simualte circuits containing those devices, semiconductor devices are often reflected by compact models - subcircuits of basic elements like resistors, capacitors, inductors and current/voltage sources. Those compact models shoul rebuild the input/output behaviour of the semiconductor device.
Ongoing miniaturization and the step from miro- to nanotechnology, however, leads to more powerful prozessors and chips, since higher packing density can be achieved. On the other hand, this higher packing density and miniaturization of the devices makes parasitic effects like heating predominant. Incorporation of those effects into compact models results in large compact models to describe a single semiconductor device. This makes it desireable to include more exact distributed device models - device models based on partial differential equations - into circuit simulation.
Moreover, smaller devices are driven by smaller signals, what makes them more energy efficient. On the other hand this results in a larger noise/signal ratio, what makes inclusion of non-deterministic effects into device models interesting. All in all, this leads to the following recent question in semiconductor/circuit modelling and simulation:
- Thermal effects in semiconductor devices
- Noise in semiconductor devices (SDEs)
- Quantum Effects in semiconductor devices
- Electro-thermal coupling of optoelectronic semiconductor devices with electric circuits
- Efficient Co-Simulation of circuit/semiconductor problems (Dynamic Iteration schemes)
Former and ongoing projects
Cooperations
- Vittorio Romano, Università degli studi di Catania, Italy
- Giuseppe Ali, Universitá della Calabria, Italy
- Ansgar Jüngel, TU Vienna, Austria
- Pina Milisic, University of Zagreb, Croatia
Open subjects for theses
- Master Thesis: Two-dimensional thermal-electric simulation of semiconductor MOSFET-devices (M.Brunk)
Publications
- 2019
4042.
Wißdorf, Walter; Lorenz, Matthias; Brockmann, Klaus Josef; Benter, Thorsten
Systematic Ion Source Parameter Assessment by Automated Determination of the Distribution of Ion Acceptance (DIA) Using APLI
Journal of The American Society for Mass Spectrometry, 30 (7) :1262-1275
2019
Herausgeber: Journal of The American Society for Mass Spectrometry4041.
Wissdorf, Walter; Lorenz, Matthias; Brockmann, Klaus Josef; Benter, Thorsten
Systematic Ion Source Parameter Assessment by Automated Determination of the Distribution of Ion Acceptance (DIA) Using APLI
Journal of The American Society for Mass Spectrometry, 30 (7) :1262-1275
2019
Herausgeber: Journal of The American Society for Mass Spectrometry4040.
[english] Grandrath, Rebecca; Bohrmann-Linde, Claudia
Teaching Sustainability in the Chemistry Classroom: Exploring Fuel Cells in Simple Hands-on Experiments with Hydrogen, Sugar and Alcohol
World Journal of Chemical Education, 7 (2) :172-178
2019
ISSN: 2375-16574039.
Janssen, Rick; Gillon, Renaud; Wieers, Aarnout; Deleu, Frederik; Guegnaud, Hervé; Reynier, Pascal; Schoenmaker, Wim; Maten, E. Jan W.
Test cases for power-MOS devices and RF-circuitry
In ter Maten, E. Jan W. and Brachtendorf, Hans-Georg and Pulch, Roland and Schoenmaker, Wim and De Gersem, Herbert, Editor aus Mathematics in Industry
Seite 459–485
Herausgeber: Springer Cham
2019
459–4854038.
Ehrhardt, Matthias; Günther, Michael
The 2D tree--grid method
Journal of Computational Finance
20194037.
Biallas, Phillip; Mensak, Tobias M.; Kunz, Kevin-Alexander
The Deazidoalkoxylation: Sequential Nucleophilic Substitutions with Diazidated Diethyl Malonate
The Journal of Organic Chemistry, 84 (3) :1654–1663
2019
ISSN: 0022-32634036.
Ferrari, Paola; Furci, Isabella; Hon, Sean; Mursaleen, Mohammad Ayman; Serra-Capizzano, Stefano
The eigenvalue distribution of special 2-by-2 block matrix-sequences with applications to the case of symmetrized Toeplitz structures
SIAM J. Matrix Anal. Appl., 40 (3) :1066-1086
20194035.
Ferrari, Paola; Furci, Isabella; Hon, Sean; Mursaleen, Mohammad Ayman; Serra-Capizzano, Stefano
The eigenvalue distribution of special 2-by-2 block matrix-sequences with applications to the case of symmetrized Toeplitz structures
SIAM J. Matrix Anal. Appl., 40 (3) :1066-1086
2019
ISSN: 0895-47984034.
Ferrari, Paola; Furci, Isabella; Hon, Sean; Mursaleen, Mohammad Ayman; Serra-Capizzano, Stefano
The eigenvalue distribution of special 2-by-2 block matrix-sequences with applications to the case of symmetrized Toeplitz structures
SIAM J. Matrix Anal. Appl., 40 (3) :1066-1086
2019
ISSN: 0895-47984033.
Kruse, Thomas; Schneider, Judith C; Schweizer, Nikolaus
The joint impact of F-divergences and reference models on the contents of uncertainty sets
Operations Research, 67 (2) :428--435
2019
Herausgeber: INFORMS4032.
Kruse, Thomas; Schneider, Judith; Schweizer, Nikolaus
The joint impact of F-divergences and reference models on the contents of uncertainty sets
Operations Research, 67 (2) :428–435
2019
Herausgeber: INFORMS4031.
Bunker, Philip R.; Mills, Ian M.; Jensen, Per
The Planck constant and its units
Journal of Quantitative Spectroscopy and Radiative Transfer, 237 :106594
20194030.
Bunker, Philip R.; Mills, Ian M.; Jensen, Per
The Planck constant and its units
Journal of Quantitative Spectroscopy and Radiative Transfer, 237 :106594
20194029.
Bunker, Philip R.; Mills, Ian M.; Jensen, Per
The Planck constant and its units
Journal of Quantitative Spectroscopy and Radiative Transfer, 237 :106594
20194028.
Ehrhardt, Matthias; Günther, Michael
The Two-Dimensional Tree--Grid Method
Journal of Computational Finance, Forthcoming
20194027.
Kossaczky, Igor; Ehrhardt, Matthias; Günther, Michael
The two-dimensional tree-grid method
Journal of Computational Finance, 23 (2) :29–57
2019
Herausgeber: Incisive Media4026.
Kossaczky, Igor; Ehrhardt, Matthias
The two-dimensional tree-grid method
JOURNAL OF COMPUTATIONAL FINANCE, 23 (2) :29--57
2019
Herausgeber: INCISIVE MEDIA HAYMARKET HOUSE, 28-29 HAYMARKET, LONDON, SW1Y 4RX, ENGLAND4025.
Kossaczky, Igor; Ehrhardt, Matthias; Günther, Michael
The two-dimensional tree-grid method
Journal of Computational Finance, 23 (2) :29–57
2019
Herausgeber: Incisive Media4024.
Kossaczky, Igor; Ehrhardt, Matthias; Günther, Michael
The two-dimensional tree-grid method
Journal of Computational Finance, 23 (2) :29–57
2019
Herausgeber: Incisive Media4023.
Palma-Cando, A.; Rendon-Enriquez, Ibeth; Tausch, Michael W.; Scherf, U.
Thin Functional Polymer Films by Electropolymerization
Nanomaterials, 9 (8) :1125
20194022.
[english] Kremer, Richard; Meuter, Nico; Tausch, Michael W.
Towards Artificial Photosynthesis - Promoting Microscale Photochemistry in Science Education
African Journal of Chemical Education, 9 (3) :120-134
20194021.
[english] Brunnert, Rainer; Yurdanur, Yasemin; Tausch, Michael W.
Towards Artificial Photosynthesis in Science Education
World Journal of Chemical Education, 7 (2) :33--39
2019
Herausgeber: Science and Education Publishing Co., Ltd.4020.
Mellor, Thomas M.; Yurchenko, Sergey N.; Mant, Barry P.; Jensen, Per
Transformation Properties under the Operations of the Molecular Symmetry Groups G\(_{36}\) and G\(_{36}\)(EM) of Ethane H\(_{3}\)CCH\(_{3}\)
Symmetry, 11 (7) :862
20194019.
Mellor, Thomas M.; Yurchenko, Sergey N.; Mant, Barry P.; Jensen, Per
Transformation Properties under the Operations of the Molecular Symmetry Groups G\(_{36}\) and G\(_{36}\)(EM) of Ethane H\(_{3}\)CCH\(_{3}\)
Symmetry, 11 (7) :862
20194018.
Mellor, Thomas M.; Yurchenko, Sergey N.; Mant, Barry P.; Jensen, Per
Transformation Properties under the Operations of the Molecular Symmetry Groups G36 and G36(EM) of Ethane H3CCH3
Symmetry, 11 (7) :862
2019