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Quantum Heterostructures - Microelectronics and Optoelectronics (Hardcover): Vladimir Mitin, Viacheslav Kochelap, Michael A.... Quantum Heterostructures - Microelectronics and Optoelectronics (Hardcover)
Vladimir Mitin, Viacheslav Kochelap, Michael A. Stroscio
R5,783 Discovery Miles 57 830 Ships in 10 - 15 working days

Quantum Heterostructures provides a detailed description of the key physical and engineering principles of quantum semiconductor heterostructures. Blending important concepts from physics, materials science, and electrical engineering, it also explains clearly the behavior and operating features of modern microelectronic and optoelectronic devices. The authors begin by outlining the trends that have driven development in this field, most importantly the need for high-performance devices in computer, information, and communications technologies. They then describe the basics of quantum nanoelectronics, including various transport mechanisms. In the latter part of the book, they cover novel microelectronic devices, and optical devices based on quantum heterostructures. The book contains many homework problems and is suitable as a textbook for undergraduate and graduate courses in electrical engineering, physics, or materials science. It will also be of great interest to those involved in research or development in microelectronic or optoelectronic devices.

Quantum Heterostructures - Microelectronics and Optoelectronics (Paperback): Vladimir Mitin, Viacheslav Kochelap, Michael A.... Quantum Heterostructures - Microelectronics and Optoelectronics (Paperback)
Vladimir Mitin, Viacheslav Kochelap, Michael A. Stroscio
R3,282 Discovery Miles 32 820 Ships in 10 - 15 working days

Quantum Heterostructures provides a detailed description of the key physical and engineering principles of quantum semiconductor heterostructures. Blending important concepts from physics, materials science, and electrical engineering, it also explains clearly the behavior and operating features of modern microelectronic and optoelectronic devices. The authors begin by outlining the trends that have driven development in this field, most importantly the need for high-performance devices in computer, information, and communications technologies. They then describe the basics of quantum nanoelectronics, including various transport mechanisms. In the latter part of the book, they cover novel microelectronic devices, and optical devices based on quantum heterostructures. The book contains many homework problems and is suitable as a textbook for undergraduate and graduate courses in electrical engineering, physics, or materials science. It will also be of great interest to those involved in research or development in microelectronic or optoelectronic devices.

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