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
- 2016
3272.
George, Christian; Herrmann, Hartmut; Kleffmann, Jörg
Verbessert Photokatalyse die Luftqualit{ä}t?
Nachrichten aus der Chemie, 64 (6) :613-616
2016
Herausgeber: John Wiley \& Sons, Ltd3271.
George, Christian; Herrmann, Hartmut; Kleffmann, Jörg
Verbessert Photokatalyse die Luftqualit{ä}t?
Nachrichten aus der Chemie, 64 (6) :613-616
2016
Herausgeber: John Wiley \& Sons, Ltd3270.
George, Christian; Herrmann, Hartmut; Kleffmann, Jörg
Verbessert Photokatalyse die Luftqualität?
Nachrichten aus der Chemie, 64 (6) :613-616
2016
Herausgeber: John Wiley & Sons, Ltd3269.
Bredenkamp, Angela; Wegener, Michael; Hummel, Sara; Häring, Andreas P.
Versatile process for the stereodiverse construction of 1,3-polyols: iterative chain elongation with chiral building blocks
Chemical Communications, 52 (9) :1875–1878
2016
ISSN: 1364-548X3268.
Petrov, P.; Makarov, D. V.; Ehrhardt, M.
Wide-angle parabolic approximations for the nonlinear {Helmholtz} equation in the {Kerr} media
EPL, 116
20163267.
Wide-angle parabolic approximations for the nonlinear Helmholtz equation in the Kerr media
Europhysics Letters, 116 (2) :24004
2016
Herausgeber: IOP Publishing3266.
Makarov, D. V.; Ehrhardt, Matthias
Wide-angle parabolic approximations for the nonlinear Helmholtz equation in the Kerr media
Europhysics Letters, 116 (2) :24004
2016
Herausgeber: IOP Publishing3265.
Makarov, D. V.; Ehrhardt, Matthias
Wide-angle parabolic approximations for the nonlinear Helmholtz equation in the Kerr media
Europhysics Letters, 116 (2) :24004
2016
Herausgeber: IOP Publishing3264.
Göstl, Robert; Sijbesma, R. P.
π-extended anthracenes as sensitive probes for mechanical stress
Chemical Science, 7 (1) :370--375
Januar 2016
ISSN: 2041-6539- 2015
3263.
Göstl, Robert; Sijbesma, Rint. P.
Autonomous repair of polymer networks by stress-induced catalyst activation
Seite 3--9
Herausgeber: Delft University Press
1 Edition
November 2015
3--9ISBN: 978-1-61499-514-2 978-1-61499-513-5
3262.
Fredersdorf, Maic; Göstl, Robert; Kolmer, Andreas; Schmidts, Volker; Monecke, Peter; Hecht, Stefan; Thiele, Christina M.
Exploring the Conformational Space of Bridge-Substituted Dithienylcyclopentenes
Chemistry – A European Journal, 21 (41) :14545--14554
Oktober 2015
ISSN: 1521-37653261.
Göstl, Robert; Hecht, Stefan
Photoreversible Prodrugs and Protags: Switching the Release of Maleimides by Using Light under Physiological Conditions
Chemistry – A European Journal, 21 (11) :4422--4427
März 2015
ISSN: 1521-37653260.
Putek, Piotr; Meuris, Peter; Pulch, Roland; Maten, E Jan W; Schoenmaker, Wim; Günther, Michael
Uncertainty quantification for robust topology optimization of power transistor devices
IEEE Transactions on Magnetics, 52 (3) :1--4
März 2015
Herausgeber: IEEE3259.
Tausch, Michael W.; Meuter, Nico
''Photonen und Moleküle - Photolumineszenz und Photochromie'', Begleitheft zur gleichnamigen Interaktionsbox
Herausgeber: Hedinger, Stuttgart
20153258.
Tausch, Michael W.
''Photoprozesse als Kernthema'', Chemie und Energie in Schülerlaboren
TU Braunschweig
20153257.
Jacob, Birgit; Morris, Kirsten; Zwart, Hans
{C_0}-semigroups for hyperbolic partial differential equations on a one-dimensional spatial domain
J. Evol. Equ., 15 (2) :493--502
20153256.
Jacob, Birgit; Morris, Kirsten; Zwart, Hans
C_0-semigroups for hyperbolic partial differential equations on a one-dimensional spatial domain
J. Evol. Equ., 15 (2) :493--502
20153255.
Friedhoff, S.; MacLachlan, S.
A generalized predictive analysis tool for multigrid methods
Numer. Linear Algebra Appl., 22 (4) :618-647
20153254.
Friedhoff, S.; MacLachlan, S.
A generalized predictive analysis tool for multigrid methods
Numer. Linear Algebra Appl., 22 (4) :618-647
20153253.
Friedhoff, S.; MacLachlan, S.
A generalized predictive analysis tool for multigrid methods
Numer. Linear Algebra Appl., 22 (4) :618-647
20153252.
Sandu, Adrian; Günther, Michael
A generalized-structure approach to additive Runge--Kutta methods
SIAM Journal on Numerical Analysis, 53 (1) :17--42
2015
Herausgeber: Society for Industrial and Applied Mathematics3251.
Sandu, Adrian; Günther, Michael
A generalized-structure approach to dditive Runge-Kutta methods
SIAM Journal on Numerical Analysis, 53 (1) :17–42
2015
Herausgeber: Society for Industrial and Applied Mathematics3250.
Sandu, Adrian; Günther, Michael
A generalized-structure approach to dditive Runge-Kutta methods
SIAM Journal on Numerical Analysis, 53 (1) :17–42
2015
Herausgeber: Society for Industrial and Applied Mathematics3249.
Dächert, Kerstin; Klamroth, Kathrin
A linear bound on the number of scalarizations needed to solve discrete tricriteria optimization problems
Journal of Global Optimization, 61 (4) :643–676
20153248.
Speck, R.; Ruprecht, D.; Emmett, M.; Minion, M.; Bolten, Matthias; Krause, R.
A multi-level spectral deferred correction method
BIT, 55 :843-867
2015