Showing posts with label Quantum Phenomena in Nanostructures. Show all posts
Showing posts with label Quantum Phenomena in Nanostructures. Show all posts

Sunday, November 4, 2012

Topics Covered

Fundamentals of quantum mechanics: effective-mass Schrodinger Equation, matrix representation, Greenis function: Fundamentals of nonequilibrium statistical mechanics: scattering and relaxation. Carrier transport: density of states, current, tunneling and transmission probabilities, introduction to transport in the collective picture. Basic principles of a few effective devices: resonant tunnel diode, super lattice, quantum wire and dot.