£113.63

Springer Theory of Transport Properties of Semiconductor Nanostructures

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Description

Explore the complex world of semiconductor physics with this specialized text from the Electronic Materials Series. As fabrication techniques allow for the design of nanometre-scale structures, understanding their unique electronic and optoelectronic properties becomes essential for the next generation of device applications. This book addresses the fundamental challenges in modern basic research. It provides the theoretical framework needed to handle the quantum limit of charge transport, ultrafast carrier dynamics, and strongly nonlinear high-field effects. It is designed for researchers and professionals working at the intersection of nanotechnology and electrical engineering. By focusing on the theoretical understanding of electrical transport in nanostructures, this volume serves as a necessary resource for anyone studying how advanced theoretical techniques can solve current issues in semiconductor development. It offers a deep look into the physics that will drive future technological advancements in the field.

Key Features

Covers advanced theoretical techniques required to manage the quantum limit of charge transport in nanostructures.

Provides detailed insights into ultrafast carrier dynamics for modern semiconductor research.

Explores strongly nonlinear high-field effects essential for future device applications.

Part of the prestigious Electronic Materials Series (Volume 4) from Springer.

Focuses on the theoretical understanding of electrical transport in nanometre-scale designs.

Addresses the relationship between fabrication advances and extraordinary optoelectronic properties.

Product Specifications

Format
paperback
Domain
Amazon UK
Release Date
14 March 2014
Listed Since
06 August 2014

Barcode

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