Nano-Electronic Devices

Semiclassical and Quantum Transport Modeling
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Gewicht:
811 g
Format:
247x167x30 mm
Beschreibung:

This exhaustive survey of advanced simulation methods for modeling nanoscale devices systematically covers both theoretical approaches and numerical solutions, links methodology with the type of device, and includes advice on state-of-the-art semiconductors.
Provides a thorough overview of the methodologies that have been used in modeling longer channel length, nanoscale devices, are currently being used in understanding the operation and in design of nanoscale devices and should be used in design of ultra small scale future technology devices
Introduction.-Drift-Diffusion Modeling.-Hydrodynamic Modeling.-Monte Carlo particle-based device simulation.-Scattering Matrix Approach for Balistic Transport Calculations.-Density Matrix Method.-Wigner Function Approach.-Green s Functions approach.-Atomistic Simulations.-Future directions of modeling and simulation.

This book surveys the advanced simulation methods needed for proper modeling of state-of-the-art nanoscale devices. It systematically describes theoretical approaches and the numerical solutions that are used in explaining the operation of both power devices as well as nano-scale devices. It clearly explains for what types of devices a particular method is suitable, which is the most critical point that a researcher faces and has to decide upon when modeling semiconductor devices.

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