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Fundamentals of Solid State Engineering

By: Razeghi, Manijeh [author.].
Contributor(s): SpringerLink (Online service).
Material type: materialTypeLabelBookPublisher: Boston, MA : Springer US, 2006.Edition: Second Edition.Description: XXXII, 882 p. 429 illus. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9780387287515.Subject(s): Engineering | Solid state physics | Spectroscopy | Microscopy | Electrical engineering | Electronics | Microelectronics | Electronic circuits | Optical materials | Electronic materials | Engineering | Circuits and Systems | Solid State Physics | Spectroscopy and Microscopy | Electronics and Microelectronics, Instrumentation | Optical and Electronic Materials | Electrical EngineeringDDC classification: 621.3815 Online resources: Click here to access online
Contents:
Crystalline Properties of Solids -- Electronic Structure of Atoms -- to Quantum Mechanics -- Electrons and Energy Band Structures in Crystals -- Phonons -- Thermal Properties of Crystals -- Equilibrium Charge Carrier Statistics in Semiconductors -- Non-Equilibrium Electrical Properties of Semiconductors -- Semiconductor p-n and Metal-Semiconductor Junctions -- Optical Properties of Semiconductors -- Semiconductor Heterostructures and Low-Dimensional Quantum Structures -- Compound Semiconductors and Crystal Growth Techniques -- Semiconductor Characterization Techniques -- Defects -- Semiconductor Device Technology -- Semiconductor Device Processing -- Transistors -- Semiconductor Lasers -- Photodetectors - General Concepts -- Photon Detectors.
In: Springer eBooksSummary: Fundamentals of Solid State Engineering, 2nd Edition, provides a multi-disciplinary introduction to Solid State Engineering, combining concepts from physics, chemistry, electrical engineering, materials science and mechanical engineering. Basic physics concepts are introduced, followed by a thorough treatment of the technology for solid state engineering. Topics include compound semiconductor bulk and epitaxial thin films growth techniques, current semiconductor device processing and nano-fabrication technologies. Examples of semiconductor devices and a description of their theory of operation are then discussed, including transistors, semiconductor lasers and photodetectors. Revised throughout, this second edition includes new chapters on the reciprocal lattice, optical properties of semiconductors, semiconductor heterostructures, semiconductor characterization techniques, and an introduction to lasers. Additions and improvements have been made to the material on photodetectors and quantum mechanics as well as to the problem sections.
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Item type Current location Call number Status Date due Barcode Item holds
E books E books PK Kelkar Library, IIT Kanpur
Available EBK8770
Total holds: 0

Crystalline Properties of Solids -- Electronic Structure of Atoms -- to Quantum Mechanics -- Electrons and Energy Band Structures in Crystals -- Phonons -- Thermal Properties of Crystals -- Equilibrium Charge Carrier Statistics in Semiconductors -- Non-Equilibrium Electrical Properties of Semiconductors -- Semiconductor p-n and Metal-Semiconductor Junctions -- Optical Properties of Semiconductors -- Semiconductor Heterostructures and Low-Dimensional Quantum Structures -- Compound Semiconductors and Crystal Growth Techniques -- Semiconductor Characterization Techniques -- Defects -- Semiconductor Device Technology -- Semiconductor Device Processing -- Transistors -- Semiconductor Lasers -- Photodetectors - General Concepts -- Photon Detectors.

Fundamentals of Solid State Engineering, 2nd Edition, provides a multi-disciplinary introduction to Solid State Engineering, combining concepts from physics, chemistry, electrical engineering, materials science and mechanical engineering. Basic physics concepts are introduced, followed by a thorough treatment of the technology for solid state engineering. Topics include compound semiconductor bulk and epitaxial thin films growth techniques, current semiconductor device processing and nano-fabrication technologies. Examples of semiconductor devices and a description of their theory of operation are then discussed, including transistors, semiconductor lasers and photodetectors. Revised throughout, this second edition includes new chapters on the reciprocal lattice, optical properties of semiconductors, semiconductor heterostructures, semiconductor characterization techniques, and an introduction to lasers. Additions and improvements have been made to the material on photodetectors and quantum mechanics as well as to the problem sections.

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