Activities
Erasmus Langer
Siegfried Selberherr
Preface
Abel Barrientos
Non-Stationary Effects of Space Charge in Semiconductor Structures for High-Frequency Electronics
Oskar Baumgartner
Numerical Calculation of Scattering Rates in Quantum Cascade Lasers
Hajdin Ceric
Advanced Reliability TCAD with Atomistic Methods
Johann Cervenka
Three-Dimensional Device Generation of DotFET Structures
Otmar Ertl
Large-Scale Topography Simulation
Lado Filipovic
Three-Dimensional Modeling of the Thermal Oxidation of Silicon Using the Level Set Method
Wolfgang Gös
Identification of Nitrogen-Related Defects
Klaus-Tibor Grasser
Anomalous Behavior of Oxide Defects in MOS Transistors
Philipp Hehenberger
Linking Bias Temperature Stress and Recovery
René Heinzl
Mesh Generation, Error Estimation, and Adaptation
Hans Kosina
Physical Modeling of Nanoelectronic Devices
Alexander Makarov
Stochastic Modeling of the Resistive Switching Mechanism in Oxide-Based Memory
Goran Milovanovic
Monte Carlo Simulation of Quantum Cascade Lasers
Mihail Nedjalkov
Wigner-Boltzmann Transport Models
Neophytos Neophytou
Atomistic Design of Nanostructured Thermoelectric Devices
Roberto Orio
Effect of the Microstructure on the Electromigration Lifetime Distribution
Vassil Palankovski
Analysis and Simulation of Advanced Heterostructure Devices
Mahdi Pourfath
Optical Properties of Graphene Nanoribbons
Karl Rupp
Spherical Harmonics Expansions of the Boltzmann Transport Equation for Semiconductors
Franz Schanovsky
Quantum Chemistry Calculation of Charge Trapping into Oxide-Defects
Zlatan Stanojevic
Simulation of Silicon Nanowire Subband Structures
Ivan Starkov
Monte-Carlo Device Simulations for Hot-Carrier Reliability Modeling
Franz Stimpfl
Modular Non-Manifold Mesh Refinement
Viktor Sverdlov
Modeling of Modern MOSFETs with Strain
Stanislav Tyaginov
Hot-Carrier Degradation Modeling Using Full-Band Monte-Carlo Simulations
Stanislav Vitanov
Simulation of High Electron Mobility Transistors
Paul-Jürgen Wagner
Extraction of Oxide Trap Parameters
Thomas Windbacher
Simulation of BioFETs
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