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Future Trends in Microelectronics

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Cover of 'Future Trends in Microelectronics'

Table of Contents

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    Book Overview
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    Chapter 1 All that Glitters isn’t Silicon
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    Chapter 2 Si-Microelectronics: Perspectives, Risks, Opportunities, Challenges
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    Chapter 3 Mass Production of Nanometre Devices
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    Chapter 4 Active Packaging: a New Fabrication Principle for High Performance Devices and Systems
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    Chapter 5 The Wiring Challenge: Complexity and Crowding
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    Chapter 6 Physics, Materials Science, and Trends in Microelectronics
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    Chapter 7 Growing Up in the Shadow of a Silicon ‘Older Brother’: Tales of an Abusive Childhood from GaAs and other New Technology Siblings!
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    Chapter 8 Comments on the National Technology Roadmap for Semiconductors
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    Chapter 9 Critique of Reversible Computation and other Energy Saving Techniques in Future Computational Systems
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    Chapter 10 Architectural Frontiers Enabled by High Connectivity Packaging
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    Chapter 11 Processor Performance Scaling
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    Chapter 12 Quantum Devices for Future CSICs
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    Chapter 13 Challenges and Trends for the Application of Quantum-Based Devices
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    Chapter 14 Wire and Dot Related Devices
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    Chapter 15 Nonlithographic Fabrication and Physics of Nanowire and Nanodot Array Devices — Present and Future
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    Chapter 16 Taming Tunnelling En Route to Mastering Mesoscopics
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    Chapter 17 Prospects for Quantum Dot Structures Applications in Electronics and Optoelectronics
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    Chapter 18 Architectures for Nano-Scaled Devices
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    Chapter 19 Simulating Electronic Transport in Semiconductor Nanostructures
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    Chapter 20 Monte Carlo Simulation for Reliability Physics Modeling and Prediction of Scaled (100 nm) Silicon Mosfet Devices
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    Chapter 21 Superconductor-Semiconductor Devices
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    Chapter 22 Field Effect Transistor as Electronic Flute
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    Chapter 23 Heterodimensional Technology for Ultra Low Power Electronics
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    Chapter 24 Lateral Current Injection Lasers — a New Enabling Technology for Oeics
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    Chapter 25 Wide Band GAP Semiconductors. Good Results and Great Expectations
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    Chapter 26 GaN and Related Compounds for Wide Bandgap Applications
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    Chapter 27 Prospects in Wide-Gap Semiconductor Lasers
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    Chapter 28 Organic Transistors — Present and Future
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    Chapter 29 Microcavity Emitters and Detectors
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    Chapter 30 Optical Amplification, Lasing and Wavelength Division Multiplexing Integrated in Glass Waveguides
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    Chapter 31 Ultimate Performance of Diode Lasers in Future High-Speed Optical Communication Systems
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    Chapter 32 Increased-Functionality VLSI-Compatible Devices Based on Backward-Diode Floating-Base Si/SiGe Heterojunction Bipolar Transistors
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    Chapter 33 Real-Space-Transfer of Electrons in the InGaAs/InAlAs System
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    Chapter 34 Charge Injection Transistor and Logic Elements in Si/Si 1−x Ge x Heterostructures
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    Chapter 35 New Ideology of All-Optical Microwave Systems Based on the Use of Semiconductor Laser as a Down-Converter
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    Chapter 36 Microtechnology — Thermal Problems in Micromachines, ULSI & Microsensors Design
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    Chapter 37 Emerging and Future Intelligent Aviation & Automotive Applications of Mimo ASIM Macrocommutators and ASIC Microcontrollers
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    Chapter 38 Trends in Thermal Management of Microcircuits
Overall attention for this book and its chapters
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Title
Future Trends in Microelectronics
Published by
Springer Netherlands, December 2012
DOI 10.1007/978-94-009-1746-0
ISBNs
978-9-40-107280-9, 978-9-40-091746-0
Editors

Luryi, Serge, Xu, Jimmy, Zaslavsky, Alex

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 43 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 1 2%
Unknown 42 98%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 10 23%
Researcher 8 19%
Student > Doctoral Student 5 12%
Professor > Associate Professor 5 12%
Student > Bachelor 4 9%
Other 8 19%
Unknown 3 7%
Readers by discipline Count As %
Physics and Astronomy 15 35%
Engineering 14 33%
Materials Science 6 14%
Computer Science 1 2%
Social Sciences 1 2%
Other 0 0%
Unknown 6 14%