9781108475662-1108475663-Theoretical Foundations of Nanoscale Quantum Devices

Theoretical Foundations of Nanoscale Quantum Devices

ISBN-13: 9781108475662
ISBN-10: 1108475663
Edition: 1
Author: Govind P. Agrawal, Malin Premaratne
Publication date: 2021
Publisher: Cambridge University Press
Format: Hardcover 298 pages
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Book details

ISBN-13: 9781108475662
ISBN-10: 1108475663
Edition: 1
Author: Govind P. Agrawal, Malin Premaratne
Publication date: 2021
Publisher: Cambridge University Press
Format: Hardcover 298 pages

Summary

Theoretical Foundations of Nanoscale Quantum Devices (ISBN-13: 9781108475662 and ISBN-10: 1108475663), written by authors Govind P. Agrawal, Malin Premaratne, was published by Cambridge University Press in 2021. With an overall rating of 3.5 stars, it's a notable title among other Engineering (Optics, Physics, Solid-State Physics, Technology) books. You can easily purchase or rent Theoretical Foundations of Nanoscale Quantum Devices (Hardcover) from BooksRun, along with many other new and used Engineering books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

Nanooptics which describes the interaction of light with matter at the nanoscale, is a topic of great fundamental interest to physicists and engineers and allows the direct observation of quantum mechanical phenomena in action. This self-contained and extensively referenced text describes the underlying theory behind nanodevices operating in the quantum regime for use both in advanced courses and as a reference for researchers in physics, chemistry, electrical engineering, and materials science. Presenting an extensive theoretical toolset for design and analysis of nanodevices, the authors demonstrate the art of developing approximate quantum models of real nanodevices. The rudimentary mathematical knowledge required to master the material is carefully introduced, with detailed derivations and frequent worked examples allowing readers to gain a thorough understanding of the material. More advanced applications are gradually introduced alongside analytical approximations and simplifying assumptions often used to make such problems tractable while representative of the observed features.

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