Książka Monte Carlo Device Simulation Karl Hess

Monte Carlo Device Simulation

Full Band and Beyond

Autor: Karl Hess
Język: Angielski
Oprawa: Twarda
Wydawca: Springer
Dostępność: Dostępna u dostawcy
Wysyłamy za 10-13 dni
634.56
Monte Carlo simulation is now a well established method for studying semiconductor devices and is pa...

Informacje o książce

Autor
Język
Angielski
Oprawa
Książka - Twarda
Data wydania
1991
strony
310
EAN
9780792391722
ISBN
0792391721
Enbook ID
01398082
Wydawca
Waga
1390
Wymiary
155 x 235 x 22

Pełny opis

Monte Carlo simulation is now a well established method for studying semiconductor devices and is particularly well suited to highlighting physical mechanisms and exploring material properties. Not surprisingly, the more completely the material properties are built into the simulation, up to and including the use of a full band structure, the more powerful is the method. Indeed, it is now becoming increasingly clear that phenomena such as reliabil ity related hot-electron effects in MOSFETs cannot be understood satisfac torily without using full band Monte Carlo. The IBM simulator DAMOCLES, therefore, represents a landmark of great significance. DAMOCLES sums up the total of Monte Carlo device modeling experience of the past, and reaches with its capabilities and opportunities into the distant future. This book, therefore, begins with a description of the IBM simulator. The second chapter gives an advanced introduction to the physical basis for Monte Carlo simulations and an outlook on why complex effects such as collisional broadening and intracollisional field effects can be important and how they can be included in the simulations. References to more basic intro the book. The third chapter ductory material can be found throughout describes a typical relationship of Monte Carlo simulations to experimental data and indicates a major difficulty, the vast number of deformation poten tials required to simulate transport throughout the entire Brillouin zone. The fourth chapter addresses possible further extensions of the Monte Carlo approach and subtleties of the electron-electron interaction.

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