29 Best Books on Fundamentals of Solid State Engineering

We have compiled a list of the Best Reference Books on Fundamentals of Solid State Engineering, 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 Fundamentals of Solid State Engineering 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 Fundamentals of Solid State Engineering below.

1. Fundamentals of Solid State Engineering

 
1."Fundamentals of Solid State Engineering" by Manijeh Razeghi
“Fundamentals of Solid State Engineering” Book Review: This book explores the recent advancements in semiconductor physics and nano-engineering. It covers the basics of quantum mechanics, solid state physics, advanced devices, and fabrication, explaining these topics through mathematical derivations for clear understanding. The book also includes timely application areas such as biophotonics, bioelectronics, and more.

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2."Magnetism: From Fundamentals to Nanoscale Dynamics (Springer Series in Solid-State Sciences)" by Joachim Stohr and H C Siegmann
“Magnetism: From Fundamentals to Nanoscale Dynamics (Springer Series in Solid-State Sciences)” Book Review: The book covers the basics of magnetism, including magnetic materials and their properties, magnetic fields, and magnetic interactions. It also delves into the more advanced topics of nanoscale magnetism, including spintronics and magnetic storage devices. The authors, Joachim Stohr and H C Siegmann, provide clear explanations and numerous examples to help readers understand the complex concepts.

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3."Fundamentals of Solid - State Electronics: Solution Manual" by Sah C T
“Fundamentals of Solid – State Electronics: Solution Manual” Book Review: This book serves as a comprehensive guide for individuals including students, researchers, engineers, and industry professionals worldwide. It highlights the recent advancements in Information Management and Optic Electronics, which were presented at the conferences. The book offers solutions to introductory problems to facilitate better comprehension of the underlying concepts.

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4."Fundamentals of Solid-State Lighting: LEDs, OLEDs, and Their Applications in Illumination and Displays" by Vinod Kumar Khanna
“Fundamentals of Solid-State Lighting: LEDs, OLEDs, and Their Applications in Illumination and Displays” Book Review: This book covers a broad range of topics, including solid-state devices, technologies, and materials used for lighting and display. It explains various properties of LEDs, such as efficiency, efficacy, current-voltage characteristics, and optical parameters, with detailed analysis to aid understanding of their operation. Additionally, the book covers basics such as energy gaps, light emission, semiconductor materials, and the use of LEDs in different fields, including injection luminescence, radiative and non-radiative recombination mechanisms, recombination rates, and carrier lifetimes.

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5."Ion-Solid Interactions: Fundamentals and Applications (Cambridge Solid State Science Series)" by Michael Nastasi and James Mayer
“Ion-Solid Interactions: Fundamentals and Applications (Cambridge Solid State Science Series)” Book Review: This book explains the interaction between ions and solids. The book is divided into two parts – the fundamentals and the applications of ion-solid interactions. The authors, Michael Nastasi and James Mayer, provide a clear and concise explanation of the fundamental concepts, including ion stopping power and ion ranges in solids. They then go on to explore the various applications of ion-solid interactions, such as materials modification and analysis. The book is well-organized and includes numerous examples, making it easy to understand even for beginners. This is a useful book for anyone interested in the field of ion-solid interactions.

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6."Handbook of Solid State Diffusion: Volume 1: Diffusion Fundamentals and Techniques" by Aloke Paul and Sergiy Divinski
“Handbook of Solid State Diffusion: Volume 1: Diffusion Fundamentals and Techniques” Book Review: This book is designed for students, academicians, and development engineers and covers topics such as basic fundamental techniques, applications, and recent developments in the field of solid-state diffusion. It provides equal importance to both experimental techniques and computational methods and includes related examples for better analysis of topics. The book is written in clear, easy-to-read language to aid in understanding of the fundamentals.

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7."Fundamentals of Soft Matter Science" by Linda S Hirst
“Fundamentals of Soft Matter Science” Book Review: This book serves as a guide for beginners in the field of Soft Matter Science, focusing on conceptual understanding and minimizing detailed mathematical derivations. It provides an overview of the scientific study of soft matter and molecular self-assembly, along with major classifications of materials and their characteristics. The book is written in clear language, with important concepts broken down and illustrated with diagrams and illustrations to aid understanding of experimental techniques and key concepts.

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8."Solid-State Lasers for Materials Processing: Fundamental Relations and Technical Realizations: 77 (Springer Series in Optical Sciences)" by S Weber and Reinhard Iffländer
“Solid-State Lasers for Materials Processing: Fundamental Relations and Technical Realizations: 77 (Springer Series in Optical Sciences)” Book Review: This book is an essential reference for scientists, process engineers, laser physicists, and graduate students, providing detailed descriptions of the technical and physical basic principles of solid-state lasers. It covers topics such as the parameters of laser beams, conventional applications of high power lasers, and different types of lasers. The book also includes information on potential materials for solid-state lasers and is written in an easy-to-read manner.

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9."Dynamics at Solid State Surfaces and Interfaces: Volume 2: Fundamentals" by Hrvoje Petek and Martin Wolf
“Dynamics at Solid State Surfaces and Interfaces: Volume 2: Fundamentals” Book Review: This book emphasizes ultrafast structural and electronic dynamics of elementary processes at solid surfaces and interfaces, making it a valuable resource for researchers in the field. It covers various concepts and experiments in different frequency domains and is designed to look at future developments.

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10."Semiconductor Device Fundamentals: United States Edition" by Robert F Pierret
“Semiconductor Device Fundamentals: United States Edition” Book Review: The book provides a comprehensive introduction to semiconductor devices, including new and improved devices used in the field. It presents fundamental concepts in an easily understandable language and covers basic terms, models, and properties of semiconductor devices. The book also includes details on the building blocks and analytical tools necessary to solve practical device problems.

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2. Solid State Devices

 
1."Solid State Electronic Devices" by Streetman and Banerjee
Book Review: This book offers a comprehensive introduction to semiconductor materials, devices, physics, and technology, making it an excellent resource for undergraduate electrical engineering students and scientists seeking to upgrade their knowledge of modern electronics. It provides a thorough introduction to semiconductor materials, physics, devices, and technology, aiming to develop basic semiconductor physics concepts, enhance understanding of current semiconductor devices and technology, and improve comprehension of new devices and applications. The book explains commonly used semiconductor terms and concepts in great detail, highlighting their usage in numerous solid-state devices used today. It also emphasizes the underlying physics of semiconductors, offering a better understanding of currently used semiconductor devices as well as future market potential. Additionally, it discusses their applications in electronic and optoelectronic circuits and systems, making it suitable for practicing engineers, scientists, and undergraduate electrical engineering students.

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2."Solid State Devices" by Nair and B Somanathan
“Solid State Devices” Book Review: This book simplifies solid-state theories, covering fundamental theories such as crystal structures of Group IVB elements, energy bands in solids, Fermi-Dirac distribution, direct and indirect gap materials, and electrons in semiconductors in great detail. Later on, it delves into advanced topics like P-N junction diodes, Zener and avalanche breakdowns, Hall Effect, Schottky-barrier diodes, MOS field-effect transistors, and bipolar junction transistors. This book is suitable for undergraduate and postgraduate students of electrical engineering, electronics engineering, computer science, IT, and physics.

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3."Solid-State Imaging with Charge-Coupled Devices" by A J Theuwissen Albert J P Theuwissen Theuwissen
“Solid-State Imaging with Charge-Coupled Devices” Book Review: This book covers the educational, scientific, and industrial aspects of solid-state imaging with charge-coupled devices, dividing its content into four parts. The first section explores the fundamentals of charge-coupled devices, while the second part delves into imaging concepts related to classical television applications. The next part discusses light sensitivity, noise, device architectures, and recent advancements made in the field. The book concludes with an elucidation of imager technology and various applications. This book is ideal for graduates, undergraduates, engineers, and technicians.

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4."Physics of Nanostructured Solid State Devices" by Bandyopadhyay Supriyo Bandyopadhyay
“Physics of Nanostructured Solid State Devices” Book Review: This book systematically analyzes semi-classical and quantum mechanical descriptions of electron transport, such as the drift-diffusion model, Boltzmann transport model, and various quantum transport models, as well as band structure calculation methods based on time-independent perturbation theory in solids. The book also covers the theory of optical transitions with the help of optical devices that employ quantum-confined structures like quantum wells, wires, and dots. Additionally, it includes a treatment on quantum mechanics of electrons in a magnetic field and associated phenomena, as well as discussing mesoscopic device phenomena in Aharonov-Bohm interferometers, resonant tunneling devices, etc. This book is intended for first-year graduate students of electrical engineering and/or applied physics who wish to carry out research in modern solid-state nanodevices.

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5."Solid State Devices" by De Cogan
“Solid State Devices: A Quantum Physics Approach” Book Review: This book provides a comprehensive treatment of solid-state devices, emphasizing the quantum physics field, in contrast to other fields such as chemistry, physics, or material science. This approach enables readers to develop a deeper understanding of the subject by exploring the underlying physics of solid-state devices. Students, researchers, and practitioners can benefit from this book as a reference.

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6."Solid State Electronic Devices" by D K Bhattacharya and Rajnish Sharma
“Solid State Electronic Devices” Book Review: This book provides a detailed treatment of the fundamental principles of solid-state electronic devices. It covers electron dynamics, growth and crystal properties of semiconductors, excess carriers in semiconductors, and energy bands in the first half of the book. Subsequent chapters deal with p-n junctions, field-effect transistors, and bipolar junction transistors in great detail. The book also studies advanced topics like integrated circuits, micro-electromechanical systems, rectifiers, and power supplies. It includes separate chapters dedicated to power devices, microwave devices, opto-electronic devices, and other special devices. This book is ideal for practicing engineers, undergraduate and polytechnic students.

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7."Introduction to Microelectronic Fabrication: Volume 5 of Modular Series on Solid State Devices" by Richard C Jaeger
“Introduction to Microelectronic Fabrication: Volume 5 of Modular Series on Solid State Devices” Book Review: This book offers comprehensive knowledge about resistors, diodes, and MOS and bipolar transistors, covering topics such as fabrication techniques like lithography, oxidation, diffusion, ion implantation, thin film deposition, etching, interconnection technology, packaging, yield, device design, and device layout. The language used in the book is easy to understand, making it accessible to a wide audience. Furthermore, advanced topics such as trench isolation, chemical mechanical polishing, shallow junctions, and transient enhanced diffusion are explained clearly. This book is appropriate for students in electrical, mechanical, computer science, and physics fields. Additionally, the book has a well-organized and appealing presentation.

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3. Solid State Ionics

 
1."Solid State Physics Lattice Dynamics of Ionic Solids" by G K Upadhyaya
“Solid State Physics Lattice Dynamics of Ionic Solids” Book Review: This book is a detailed study of lattice dynamics of ionic solids in solid state physics. It begins with a complete and detailed introduction of the subject, followed by important topics such as three-body interactions in ionic crystals with NaCl structure, the shell model, other models, corrections of some errors in TSM, and dynamical properties derivable from phonon spectra. The last two chapters cover numerical computations and results, discussion, and conclusion. The book is useful for students of B.Sc. (Pass & Hons.), M.Sc., engineering, and research students of Solid State Physics and chemistry.

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2."Solid State Ionics for Batteries" by T Minami and M Tatsumisago
“Solid State Ionics for Batteries” Book Review: This book discusses recent progress in batteries, including lithium-ion batteries, metal-hydride batteries, and fuel cells. It also discusses the three components of batteries, namely the positive electrode, negative electrode, and electrolyte, for the construction of all-solid-state batteries. Theoretical understanding of properties of battery materials using molecular orbital calculations is also introduced. The book is useful for graduate and undergraduate students of physics and chemistry.

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3."Solid State Ionics: Ionics For Sustainable World - Proceedings Of The 13th Asian Conference" by B V R Chowdari and Junichi Kawamura
“Solid State Ionics: Ionics For Sustainable World – Proceedings Of The 13th Asian Conference” Book Review: This book is a collection of research papers describing the latest developments and findings in the field of solid state ionics. The selected contributions from prominent researchers in the Asian Society for Solid State Ionics, presented at the 13th Asian Conference on Solid State Ionics, are included. The papers are detailed and suitable for understanding recent research trends in solid state ionics, making it a valuable resource for physicists, chemists, and material scientists.

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4."Solid State Ionics III: Volume 293 (MRS Proceedings)" by Michel Armand and Gholam-Abbas Nazri
“Solid State Ionics III: Volume 293 (MRS Proceedings)” Book Review: This is a useful book for researchers and students studying solid state ionics. The book provides a detailed study of the latest developments and findings in the field of solid state ionics, including important applications such as solid state batteries, fuel cells, and electrochemical sensors. The book is a valuable resource for physicists, chemists, and material scientists, as it covers fundamental phenomenological aspects, including crystal structure, electronic band structure, non-equilibrium thermodynamics, and phase transitions.

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5."Introduction to Solid State Ionics: Phenomenology and Applications" by C S Sunandana
“Introduction to Solid State Ionics: Phenomenology and Applications” Book Review: This book is a comprehensive study of the science and technology of superionic conductors, also known as fast ion conductors or solid electrolytes. The book focuses on fundamental phenomenological aspects, including crystal structure, photon dispersion, electronic band structure, defects, disorder, nonstoichiometry, non-equilibrium thermodynamics, and phase transitions. It also describes important applications of solid state ionics, including solid state batteries, fuel cells, and electrochemical sensors. The book will be useful for researchers and students in physics, materials science, and engineering.

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6."Solid State Batteries: Materials Design and Optimization (The Springer International Series in Engineering and Computer Science)" by Christian Julien and Gholam-Abbas Nazri
“Solid State Batteries: Materials Design and Optimization (The Springer International Series in Engineering and Computer Science)” Book Review: This book is a comprehensive study of materials design and optimization of solid state batteries, covering the latest developments in solid-state ionic technology during the last two decades. It discusses the fundamental theories for ion conduction in solids, as well as the two reasons for the huge popularity of solid state ionic batteries – economy and energy production, storage, and utilization, and the huge increase in international relationships between researchers and exchanges of results that make considerable progress between scientists. The book is useful for chemists, physicists, electrochemists, and engineers.

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7."Physics of Solid State Ionics" by Takashi Sakuma and Haruyuki Takahashi
“Physics of Solid State Ionics” Book Review: This book contains eleven contributions from researchers in solid state ionics and provides case studies that help with practical and application-based understanding of the subject matter. It also contains examples and illustrations that make learning easier, and unsolved problems that help readers test their understanding of the topics. The book is useful for researchers and graduate students who want to understand the basic concepts and important principles of the physics of solid state ionics.

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8."Electrode Processes in Solid State Ionics: Theory and Application to Energy Conversion and Storage Proceedings of the NATO Advanced Study Institute" by J Dupuy and M Kleitz
“Electrode Processes in Solid State Ionics: Theory and Application to Energy Conversion and Storage Proceedings of the NATO Advanced Study Institute” Book Review: This book explores the theory and application of electrode processes in solid state ionics, including potential applications that would benefit from a more systematic approach. It takes a fundamental viewpoint and discusses interface phenomena on ionic crystals, which are subjects of independent investigations in distinct research fields such as solid state physics and electrochemistry. This book is suitable for graduate and undergraduate students of physics and chemistry seeking a comprehensive understanding of the topic.

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9."Solid State Ionic Devices: Proceedings of the International Symposium (Electrochemical Society Proceedings)" by E. D. Wachsman
“Solid State Ionic Devices: Proceedings of the International Symposium (Electrochemical Society Proceedings)” Book Review: This book presents a collection of research papers describing the latest developments and findings in solid state ionic devices. The selected contributions come from prominent researchers in the field who presented at the 13th International Symposium on Solid State Ionics. The detailed papers provide insight into recent research trends in solid state ionics, making this book a valuable resource for physicists, chemists, and material scientists seeking to stay up-to-date with the latest advancements.

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10."Solid State Ionics" by H L Tuller
“Solid State Ionics” Book Review: This book covers the theory, experiments, and applications of Solid State Ionics, including important topics such as new materials, insertion compounds, transport, structure, polymeric electrolytes, mixed conductors, protonic and oxygen conductors, and electrochromics. It also discusses the important role Solid State Ionics will play in the future of microelectronics and other fields of energy storage, and includes real-world examples to aid in practical understanding of the subject matter. The unsolved exercises provide students with a way to test their understanding of the material. This book is an essential resource for scientists, chemists, and physicists seeking a practical understanding of Solid State Ionics.

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11."Foundations of Nanomechanics: from Solid-State Theory to Device Applications" by Andrew N Cleland
“Foundations of Nanomechanics: from Solid-State Theory to Device Applications” Book Review: This book provides a comprehensive introduction to the vast field of nanomechanics and nanomechanical devices, including solid mechanics and nonlinearity in mechanical systems with modern notation. The book analyzes piezoresistance, piezoelectricity, and other applications of electrical transducers, as well as fundamental and spurious sources of noise and their effects on the amplitude and phase of a mechanical resonator. It introduces fabrication techniques and provides a primer on optical and electron beam lithography. Carbon nanotubes and other molecular assemblies are also discussed to highlight potential future technologies. This book is suitable for professionals, researchers, or advanced students studying engineering and physics.

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12."An Introduction to Solid State Diffusion" by Richard J Borg and G J Dienes
“An Introduction to Solid State Diffusion” Book Review: This book explains the fundamentals of diffusion in solid state, including energetics and mechanisms of diffusion control and kinetics. It discusses phenomena such as the fabrication of semiconductors and superconductors, tempering of steel, geological metamorphism, precipitation hardening of nonferrous alloys, and corrosion of metals and alloys. The book is aimed at upper-level undergraduate and beginning graduate students in materials science, metallurgy, mineralogy, and solid state physics and chemistry, with a prerequisite of a knowledge of chemistry.

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We have put a lot of effort into researching the best books on Fundamentals of Solid State Engineering 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 Fundamentals of Solid State Engineering and will publish the download link here. Fill out this Fundamentals of Solid State Engineering books pdf download" request form for download notification.

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