Physics of Nanostructured Solid State Devices Physics of Nanostructured Solid State Devices

Physics of Nanostructured Solid State Devices

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    • €42.99

Publisher Description

Physics of Nanostructured Solid State Devices introduces readers to theories and concepts such as semi-classical and quantum mechanical descriptions of electron transport, methods for calculations of band structures in solids with applications in calculation of optical constants, and other advanced concepts.  The information presented here will equip readers with the necessary tools to carry out cutting edge research in modern solid state nanodevices. This book also:
Covers sophisticated models of charge transport including the drift-diffusion model, Boltzmann transport model and various quantum transport modelsDiscusses the essential elements of quantum mechanics necessary for an understanding of nanostructured solid state devicesPresents band structure calculation methods based on time-independent perturbation theoryDiscusses theory of optical transitions and optical devices employing quantum-confined structures such as quantum wells,wires and dotsElucidates quantum mechanics of electrons in a magnetic field and associated phenomenaDiscusses mesoscopic device phenomena such as in resonant tunneling devices, Aharonov-Bohm interferometers and other mesoscopic structures
Physics of Nanostructured Solid State Devices is ideal for a first year graduate student of electrical engineering and/or applied physics studying concepts that are critical to understanding the behavior of charge carriers (electrons and holes) in modern nanostructured solid state devices.

GENRE
Professional & Technical
RELEASED
2012
17 February
LANGUAGE
EN
English
LENGTH
570
Pages
PUBLISHER
Springer US
PROVIDER INFO
Springer Science & Business Media LLC
SIZE
8.7
MB
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