22 Best Books on Nanostructures Physics

We have compiled a list of the Best Reference Books on Nanostructures Physics, which are used by students of top universities, and colleges. This will help you choose the right book depending on if you are a beginner or an expert. Here is the complete list of Nanostructures Physics Books with their authors, publishers, and an unbiased review of them as well as links to the Amazon website to directly purchase them. If permissible, you can also download the free PDF books on Nanostructures Physics below.

1. Introduction to Physics of Nanoparticles and Nanostructures

 
1."Optical Properties of Solids" by F Wooten
“Optical Properties of Solids” Book Review: This book delves into the fundamental principles of intrinsic optical characteristics and photoelectric emission. It provides a comprehensive overview of the optical spectra of solids, starting with Maxwell’s equations and the dielectric function, and proceeding to cover topics such as the theory of free-electron metals, absorption and dispersion, and the quantum mechanical theory of direct and indirect conversion between bands. Additionally, the book explores more advanced concepts such as the fluctuation-dissipation theorem, current-current correlations, and the effect of surface plasmons on optical characteristics and photoemission. This book is an invaluable resource for students and professionals seeking to deepen their understanding of these critical concepts.

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2."Absorption and Scattering of Light by Small Particles" by Bohren C F and Huffman D R
“Absorption and Scattering of Light by Small Particles” Book Review: This book talks about how small particles can absorb and scatter light. It covers various topics related to how materials interact with light, including some mathematical equations. The book also includes information on how to measure the absorption and scattering of three different materials, such as magnesium oxide, aluminum, and water. There are examples and illustrations from different fields, such as physics, astrophysics, atmospheric physics, and biophysics. Overall, it covers many different aspects of light scattering and provides both exact and estimated answers to different numerical problems.

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3."Optical Properties of Semiconductor Nanocrystals" by S V Gaponenko
“Optical Properties of Semiconductor Nanocrystals” Book Review: This book talks about how small semiconductor materials interact with light. It covers various theoretical and experimental outcomes related to this topic and how we can use this knowledge to create new technologies. The book includes information on the physics of electrons in crystals, how nanocrystals grow, and how they absorb and emit light. Additionally, it covers topics like optical nonlinearities and the effects of interfaces. The book gives examples of real-world devices like light-emitting devices and optical switches and explains how they work. Overall, it describes the different ways that small materials interact with light and how we can use this information to create new technologies.

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4."Fundamentals of Semiconductors: Physics and Materials Properties" by Y U Yu and M Cardona
“Fundamentals of Semiconductors: Physics and Materials Properties” Book Review: This book is a bridge between a basic solid-state physics book and research articles. It talks about the basic characteristics of semiconductors, like how they conduct electricity, how they vibrate, and how they interact with light. The book uses clear language and includes examples to help explain the concepts. It focuses mainly on silicon and other similar semiconductors. There are tables, figures, and exercises to help readers understand the information.

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5."Electronic Transport in Mesoscopic Systems" by S Datta
“Electronic Transport in Mesoscopic Systems” Book Review: This book is for graduate students and researchers who are interested in mesoscopic physics and nanoelectronic device engineering. It talks about the history of how electrons move through small systems, like tiny wires, and covers important concepts like the quantum Hall effect and double-barrier tunnelling. The book also talks about how light can be used to study these small systems. It includes practice problems with solutions. This book is meant to help people who are studying mesoscopic physics better understand the concepts and how to use them to create new technologies.

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6."Introduction to Nanoscale Science and Technology (Nanostructure Science and Technology)" by Massimiliano Ventra and Stephane Evoy
“Introduction to Nanoscale Science and Technology (Nanostructure Science and Technology)” Book Review: This book is a suitable resource for engineers and educators alike, divided into seven comprehensive sections. It covers a range of topics including nanoscale fabrication, characterization, and imaging techniques such as nanolithography, self-assembly, and scanning probe microscopy. The book provides an overview of various nanomaterials and nanostructures, including fullerenes and quantum dots, and explores their unique characteristics and applications. It also discusses nanolayers, nanowires, and nanoparticle composites of metals and semiconductors. Additionally, the volume delves into molecular electronics, examining topics such as transport through alkanes, molecular transistors, and DNA, and also covers micro and nanoelectromechanical systems, sensing, computation, and communication. Lastly, the text includes a summary of nanobiotechnology, covering biomimetics and nanofluidics.

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7."Introduction To The Thermodynamics Of Materials" by David R Gaskell
“Introduction To The Thermodynamics Of Materials” Book Review: This book talks about how heat and energy work with different materials. It covers basic equations and concepts in thermodynamics, and explains how they apply to materials that are not made of metal, as well as how they can be used to change metal materials. The book includes examples to help explain the concepts, and shows how to use thermodynamics to understand how different material systems behave. This book is meant to help people understand how heat and energy work with different materials and how to use this knowledge to make new materials.

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8."Nanotechnology: Principles and Practices" by Sulabha K Kulkarni
“Nanotechnology: Principles and Practices” Book Review: This book talks about really tiny things called nanomaterials and how they are used in nanotechnology. It explains basic concepts of how atoms and particles behave when they are really small. The book covers different ways of making nanomaterials and how to study them. It talks about the different properties of nanomaterials, like how they react to heat and light. The book also talks about how nanomaterials are used in things like electronics and medicine. Additionally, it discusses how these tiny things can affect the environment. Some other topics covered in the book include spintronics, the lotus effect, and graphene.

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9."Introduction to Metal-Nanoparticle Plasmonics (A Wiley-Science Wise Co-Publication)" by Matthew Pelton and Garnett W Bryant
“Introduction to Metal-Nanoparticle Plasmonics (A Wiley-Science Wise Co-Publication)” Book Review: This book talks about how to create and study really tiny particles called metal nanoparticles. It explains how to use different methods to make and measure these particles, and what it means when you get results from these experiments. The book also talks about how light interacts with metal nanoparticles, and some of the ways these tiny particles can behave in unexpected ways. It covers topics like how metal nanoparticles respond to different types of light, and how people can use computers and experiments to learn more about these particles.

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10."Computational Nanotechnology: Modeling and Applications with MATLAB" by Sarhan M Musa
“Computational Nanotechnology: Modeling and Applications with MATLAB” Book Review: This book is a comprehensive guide for researchers and students interested in the application of computational methods to nanotechnology. The book covers a wide range of topics such as molecular dynamics, Monte Carlo simulations, density functional theory, and quantum transport. The chapters also include practical examples and MATLAB code to aid in understanding the concepts. The book is divided into three parts covering modeling and simulation of nanosystems, applications in nanoelectronics, and nanophotonics.

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11."Introduction to Nanoscale Science and Technology (Nanostructure Science and Technology)" by Massimiliano Ventra and Stephane Evoy
“Introduction to Nanoscale Science and Technology (Nanostructure Science and Technology) 2004th Edition” Book Review: This book provides an overview of the basic principles of nanotechnology. The book is divided into five sections, including an introduction to nanotechnology, properties of nanostructures, fabrication and characterization techniques, devices and applications, and the impact of nanotechnology on society. Topics covered include quantum mechanics, nanoscale materials, scanning probe microscopy, nanofabrication techniques, and nanoelectronics. The book is suitable for students and researchers in the field of nanotechnology.

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2. Physics of Nanostructures and Nanoscale Devices

 
1."Physics of Semiconductors" by Sapoval S and Herman C
“Physics of Semiconductors” Book Review: This book provides an in-depth explanation of semiconductor physics, electronic and optical device operation based on semiconductors. It targets students with a strong background in mathematics and physics, making it suitable for graduate-level studies in condensed-matter physics or as a reference for engineers seeking to understand semiconductor devices. The book covers topics such as semiconductor properties and types, light effects, P-n junction applications, and asymmetrical devices.

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2."Transport in Nanostructures" by Ferry D K and Goodnick S M
“Transport in Nanostructures” Book Review: This book is well-liked and talks about recent studies on tiny devices called mesoscopic devices. It explains how they work using both pictures and theories. The book talks about things like integrated quantum systems, nanostructures, and single-electron phenomena. There are also separate chapters about interference, temperature changes, and non-equilibrium behavior in these devices. The book includes lots of examples from real experiments and explains them using math. This book is good for graduate students who want to learn about mesoscopic physics or nanoelectronics, as well as researchers who work with semiconductor nanostructures.

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3."Physics of low Dimensional Semiconductors" by Davies J H
“Physics of low Dimensional Semiconductors” Book Review: This book teaches about low-dimensional semiconductors. It starts by explaining basic ideas from quantum mechanics and solid-state physics. Then it talks about different structures in semiconductors. The book focuses on two structures in particular: dual gas, which is used in field-effect transistors, and quantum well, which is important for lasers and other electronic devices. There are exercises in the book to help students learn. This book is good for undergraduate physics or electrical engineering students who are studying device physics.

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4."Nanoscale Magnetic Materials and Applications" by J Ping Liu and Eric Fullerton
“Nanoscale Magnetic Materials and Applications” Book Review: This book talks about new things happening with magnetic materials. It has reviews of experiments and theories on different types of magnetic structures, magnets made of tiny particles, and special materials used in spintronics. The book also talks about things like how the pieces inside a magnet move and what happens on a really small scale. There are also new ideas like things that remember their magnetism and materials that get cold when you magnetize them. This book is good for people who want to learn about the latest research in magnetic materials.

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5."Novel Optical Technologies for Nanofabrication (Nanostructure Science and Technology)" by Qian Liu and Xuanming Duan
“Novel Optical Technologies for Nanofabrication (Nanostructure Science and Technology)” Book Review: This is a comprehensive book that focuses on the latest advances in optical technologies for nanofabrication. The book includes chapters on the fundamentals of light-matter interactions, optical lithography, holography, interference lithography, and various nanofabrication techniques. Other topics covered in the book include plasmonics, near-field optics, and optical trapping. This book is an excellent resource for researchers and graduate students interested in the field of nanofabrication and optical technologies.

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6."Nano-Optics: Principles Enabling Basic Research and Applications" by Baldassare Di Bartolo and John Collins
“Nano-Optics: Principles Enabling Basic Research and Applications” Book Review: This book is a useful resource for students, scientists, and engineers interested in the field of nano-optics. The book covers various topics, including basic principles of nano-optics, near-field optics, imaging techniques, and plasmonics. Other important topics covered include photonic crystal fibers, spectroscopy, and quantum optics. The book is divided into six chapters, each providing a detailed discussion of the topic. It also includes exercises and solutions for self-assessment, making it an excellent tool for both learning and research purposes.

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7."Spintronics in Nanoscale Devices" by Eric R Hedin and Yong S Joe
“Spintronics in Nanoscale Devices” Book Review: This book provides an in-depth understanding of the physics of spin transport and manipulation in nanoscale devices. The book is organized into ten chapters, starting with an introduction to spintronics, followed by a description of spin transport in metals, semiconductors, and magnetic materials. The book also covers topics such as spin injection, spin detection, and spin-based logic devices. The last chapter discusses the challenges and future directions of spintronics. This book is suitable for graduate students and researchers in the field of spintronics.

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8."Nanopatterning and Nanoscale Devices for Biological Applications (Devices, Circuits, and Systems)" by Šelimović and Seila
“Nanopatterning and Nanoscale Devices for Biological Applications (Devices, Circuits, and Systems)” Book Review: This is a comprehensive book that covers various aspects of nanoscale devices and nanopatterning techniques for biological applications. The book is divided into four sections, each with several chapters that discuss topics ranging from the basics of nanoscale devices and patterning techniques to their application in various biological systems. The book covers topics such as nanoscale fabrication techniques, biosensors, microfluidics, and tissue engineering. This book is an excellent resource for graduate students, researchers, and professionals in the field of biological engineering.

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9."MoS2: Materials, Physics, and Devices (Lecture Notes in Nanoscale Science and Technology)" by Zhiming M Wang
“MoS2: Materials, Physics, and Devices (Lecture Notes in Nanoscale Science and Technology)” Book Review: The book is an ideal resource for those interested in the properties and applications of MoS2. The book covers topics such as the crystal structure and electronic properties of MoS2, various synthesis methods, and the use of MoS2 in electronic and optoelectronic devices. Specific chapters include “MoS2: Crystal Structure and Electronic Properties,” “Synthesis of MoS2,” “Electronic and Optoelectronic Devices Based on MoS2,” and “MoS2 Transistors and Circuits.” Overall, this book is a valuable reference for researchers and graduate students in the field of nanomaterials and nanotechnology.

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10."Exotic States in Quantum Nanostructures" by Sarben Sarkar
“Exotic States in Quantum Nanostructures” Book Review: This book is a comprehensive guide to exotic states in quantum structures. The book covers fundamental principles of quantum mechanics, properties of various low-dimensional structures, and electron transport phenomena. Specific topics include quantum dots, quantum wires, carbon nanotubes, and topological insulators. The book also covers recent advancements in the field, including spintronics, nanophotonics, and quantum computing. It is a valuable resource for graduate students, researchers, and professionals in the field.

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11."Nanostructure Physics of Isolated Quantum Well" by Saumitra Singha Dash and Dr Sujaul Chowdhury
“Nanostructure Physics of Isolated Quantum Well” Book Review: This is a comprehensive book that describes the properties and applications of quantum wells. The book provides an overview of the physical principles and mathematical techniques used in quantum well physics. It covers topics including confinement, quantum size effects, and exciton dynamics. It also discusses the electronic and optical properties of quantum wells, as well as their applications in various electronic and optoelectronic devices. Overall, this book is a valuable resource for researchers and students interested in the physics of quantum wells.

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We have put a lot of effort into researching the best books on Nanostructures Physics and came out with a recommended list and their reviews. If any more book needs to be added to this list, please email us. We are working on free pdf downloads for books on Nanostructures Physics and will publish the download link here. Fill out this Nanostructures Physics books pdf download" request form for download notification.

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