MalinPremaratne,Govind P.Agrawal
Theoretical Foundations of Nanoscale Quantum Devices
Theoretical Foundations of Nanoscale Quantum Devices
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- More about Theoretical Foundations of Nanoscale Quantum Devices
Nanooptics, which allows the direct observation of quantum mechanical phenomena, is a topic of great fundamental interest to physicists and engineers. This self-contained and extensively referenced text describes the underlying theory behind nanodevices operating in the quantum regime and presents an extensive theoretical toolset for design and analysis. It also demonstrates the art of developing approximate quantum models of real nanodevices.
Format: Hardback
Length: 298 pages
Publication date: 07 January 2021
Publisher: Cambridge University Press
Nanooptics, a captivating field that delves into the intricate interplay of light and matter at the nanoscale, holds immense fundamental appeal for physicists and engineers alike. By enabling direct observation of quantum mechanical phenomena in real-time, nanooptics offers a unique window into the realm of the microscopic. This comprehensive and extensively referenced text serves as a valuable resource for both advanced courses and researchers in the fields of physics, chemistry, electrical engineering, and materials science. It provides a deep understanding of the underlying theory behind nanodevices operating in the quantum regime, empowering users to design and analyze these intricate devices with precision.
The authors of this text have skillfully crafted a comprehensive theoretical framework that empowers readers to develop approximate quantum models of real-world nanodevices. They meticulously introduce the necessary mathematical concepts, providing detailed derivations and ample worked examples to facilitate a thorough grasp of the material. As the text progresses, more advanced applications are seamlessly integrated alongside analytical approximations and simplifying assumptions, which are commonly employed to address complex problems while preserving the essential features observed in nature.
By presenting a holistic approach, this text equips readers with the tools and knowledge necessary to navigate the intricate world of nanooptics and contribute to the ongoing advancements in this field. Whether you are a student seeking to deepen your understanding of quantum mechanics or a researcher seeking to push the boundaries of nanotechnology, this text serves as a valuable companion on your journey of discovery.
Weight: 726g
Dimension: 259 x 184 x 23 (mm)
ISBN-13: 9781108475662
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