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Book
Introduction to Optical and Optoelectronic Properties of Nanostructures
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ISBN: 1108556752 1108605656 1108674526 Year: 2019 Publisher: Cambridge, England : Cambridge University Press,

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Get to grips with the fundamental optical and optoelectronic properties of nanostructures. This comprehensive guide makes a wide variety of modern topics accessible, and includes up-to-date material on the optical properties of monolayer crystals, plasmonics, nanophotonics, UV quantum well lasers, and wide bandgap materials and heterostructures. The unified, multidisciplinary approach makes it ideal for those in disciplines spanning nanoscience, physics, materials science, and optical, electrical and mechanical engineering. Building on work first presented in Quantum Heterostructures (Cambridge, 1999), this volume draws on years of research and teaching experience. Rigorous coverage of basic principles makes it an excellent resource for senior undergraduates, and detailed mathematical derivations illuminate concepts for graduate students, researchers and professional engineers. The examples with solutions included in the text and end-of-chapter problems allows the students to use this text to enhance their understanding.


Book
Introduction to nanoelectronics : science, nanotechnology, engineering, and applications
Authors: --- ---
ISBN: 1107185092 110738656X 0511645368 9786612389931 1282389939 0511809093 0511649452 0511370164 0511369646 0511574207 Year: 2008 Publisher: Cambridge : Cambridge University Press,

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Increasing miniaturization of devices, components, and integrated systems requires developments in the capacity to measure, organize, and manipulate matter at the nanoscale. This textbook, first published in 2007, is a comprehensive, interdisciplinary account of the technology and science that underpin nanoelectronics, covering the underlying physics, nanostructures, nanomaterials, and nanodevices. Without assuming prior knowledge of quantum physics, this book provides a unifying framework for the basic ideas needed to understand the recent developments in the field. Numerous illustrations, homework problems and interactive Java applets help the student to appreciate the basic principles of nanotechnology, and to apply them to real problems. Written in a clear yet rigorous and interdisciplinary manner, this textbook is suitable for advanced undergraduate and graduate students in electrical and electronic engineering, nanoscience, materials, bioengineering, and chemical engineering.


Book
Quantum mechanics for nanostructures
Authors: --- ---
ISBN: 1107208386 1282631322 9786612631320 0511845162 0511728581 0511727631 0511726236 0511729537 0511724829 Year: 2010 Publisher: New York : Cambridge University Press,

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"The properties of new nanoscale materials, their fabrication and applications, as well as the operational principles of nanodevices and systems, are solely determined by quantum-mechanical laws and principles. This textbook introduces engineers to quantum mechanics and the world of nanostructures, enabling them to apply the theories to numerous nanostructure problems. The textbook covers the fundamentals of quantum mechanics, including uncertainty relations, the Schrodinger equation, perturbation theory, and tunneling. These are then applied to a quantum dot, the smallest artificial atom, and compared to hydrogen, the smallest atom in nature. Nanoscale objects with higher dimensionality, such as quantum wires and quantum wells, are introduced, as well as nanoscale materials and nanodevices. Numerous examples throughout the text help students to understand the material"--Provided by publisher. "The properties of new nanoscale materials, their fabrication and applications, as well as the operational principles of nanodevices and systems, are solely determined by quantum-mechanical laws and principles. This textbook introduces engineers to quantum mechanics and the world of nanostructures, enabling them to apply the theories to numerous nanostructure problems. The book covers the fundamentals of quantum mechanics, including uncertainty relations, the Schrodinger equation, perturbation theory, and tunneling. These are then applied to a quantum dot, the smallest artificial atom, and compared with the case of hydrogen, the smallest atom in nature. Nanoscale objects with higher dimensionality, such as quantum wires and quantum wells, are introduced, as well as nanoscale materials and nanodevices. Numerous examples throughout the text help students to understand the material"--Provided by publisher.


Book
Quantum mechanics for nanostructures
Authors: --- ---
ISBN: 9780511845161 9780521763660 Year: 2010 Publisher: Cambridge Cambridge University Press

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Book
Introduction to optical and optoelectronic properties of nanostructures
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ISBN: 9781108674522 9781108428149 Year: 2019 Publisher: Cambridge Cambridge University Press

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Digital
Physica status solidi / A. . Volume 51, Number 2, : February 16
Authors: --- --- --- --- --- et al.
ISBN: 9783112497623 9783112497616 Year: 2022 Publisher: Berlin ;; Boston De Gruyter

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Digital
Physica status solidi / A. . Volume 84, Number 2, : August 16
Authors: --- --- --- --- --- et al.
ISBN: 9783112501788 9783112501771 Year: 2022 Publisher: Berlin ;; Boston De Gruyter

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