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Fuelled by rapid growth in communications technology, silicon
heterostructures and related high-speed semiconductors are
spearheading the drive toward smaller, faster and lower power
devices. High-Speed Heterostructure Devices is a textbook on modern
high-speed semiconductor devices intended for both graduate
students and practising engineers. This book is concerned with the
underlying physics of heterostructures as well as some of the most
recent techniques for modeling and simulating these devices.
Emphasis is placed on heterostructure devices of the immediate
future such as the MODFET, HBT and RTD. The principles of operation
of other devices such as the Bloch Oscillator, RITD, Gunn diode,
quantum cascade laser and SOI and LD MOSFETs are also introduced.
Initially developed for a graduate course taught at Ohio State
University, the book comes with a complete set of homework problems
and a web link to MATLAB programs supporting the lecture material.
High-Speed Heterostructure Devices describes modern high-speed semiconductor devices intended for both graduate students and practicing engineers. The book details the underlying physics of heterostructures as well as some of the most recent techniques for modeling and simulating these devices. The emphasis is on heterostructure devices of the immediate future such as the MODFET, HBT and RTD. The authors also introduce the operating principles of other devices, including the Bloch Oscillator, RITD, Gunn diode, quantum cascade laser and SOI and LD MOSFETs. The book comes with a complete set of homework problems and a web link to MATLAB programs.
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