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These lectures are designed to introduce students to the fundamentals of carrier transport in nano-devices using a novel, “bottom up approach” that agrees with traditional methods when devices are large, but which also works for nano-devices. The goal is to help students learn how to think about carrier transport at the nanoscale and also how the bottom up approach provides a new perspective to traditional concepts like mobility and drift-diffusion equations. The lectures are designed for engineers and scientists and others who need a working knowledge of near-equilibrium (“low-field” or “linear”) transport. Applications of the theory and measurement considerations are also addressed. The lectures serve as a starting point to an extensive set of instructional materials available online.
General Model for Transport
Resistance: Ballistic to Diffusive
Thermoelectric Effects: Physical Approach
Thermoelectric Effects: Mathematics
An Introduction to Scattering
Boltzmann Transport Equation
Near-equilibrium Transport: Measurements
Graphene: A Case Study
Readership: Students and professionals in physics and engineering.
We take a unique approach that is more physically insightful, less mathematically involved, and that works for nano-devices as well as for micro and macro devices
The lectures are designed from the outset to be complemented by an extensive set of online resources
The lectures treat a traditional topic in the context of cutting-edge research, such an nanotransistors and graphene