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Physics of Nanostructured Solid State Devices / Supriyo Bandyopadhyay

By: Material type: TextTextPublication details: New York : Springer 2012Description: xix, 551pISBN:
  • 9781461411406
DDC classification:
  • 621.38152 23 BAN
LOC classification:
  • TK7871.85
Contents:
Charge and current in solids: The classical drift-diffusion model -- Boltzmann transport: Beyond the drift-diffusion model -- Some essential elements of quantum mechanics -- Band structures of crystalline solids -- Carrier scattering in solids -- Optical properties of solids -- Magnetic field effects in a nanostructured device -- Quantum transport formalisms -- Quantum devices and mesoscopic phenomena
SpringerLink ebooks - Engineering (2012)Summary: Annotation Physics of Nanostructured Solid State Devicesintroduces 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.
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Item type Current library Collection Call number Status Date due Barcode Item holds
Reference Reference Learning Resource Centre Reference Collection 621.38152 BAN (Browse shelf(Opens below)) Not for loan 3210
Total holds: 0

Charge and current in solids: The classical drift-diffusion model -- Boltzmann transport: Beyond the drift-diffusion model -- Some essential elements of quantum mechanics -- Band structures of crystalline solids -- Carrier scattering in solids -- Optical properties of solids -- Magnetic field effects in a nanostructured device -- Quantum transport formalisms -- Quantum devices and mesoscopic phenomena

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Annotation Physics of Nanostructured Solid State Devicesintroduces 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.

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