Carrier transport in nanodevices: revisiting the Boltzmann and Wigner distribution functions
Author:
Publisher
Wiley
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference14 articles.
1. A. Schenk, Advanced Physical Models for Silicon Device Simulation (Springer, Berlin, 1998).
2. Master-equation approach to the study of electronic transport in small semiconductor devices
3. Quantum transport of electrons in open nanostructures with the Wigner-function formalism
4. A Study of Quantum Transport in End-of-Roadmap DG-MOSFETs Using a Fully Self-Consistent Wigner Monte Carlo Approach
5. The Wigner Distribution Function and Second Quantization in Phase Space
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