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Toward Quantum FinFET

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Cover of 'Toward Quantum FinFET'

Table of Contents

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    Book Overview
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    Chapter 1 Simulation of Quantum Ballistic Transport in FinFETs
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    Chapter 2 Model for Quantum Confinement in Nanowires and the Application of This Model to the Study of Carrier Mobility in Nanowire FinFETs
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    Chapter 3 Understanding the FinFET Mobility by Systematic Experiments
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    Chapter 4 Quantum Mechanical Potential Modeling of FinFET
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    Chapter 5 Physical Insight and Correlation Analysis of Finshape Fluctuations and Work-Function Variability in FinFET Devices
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    Chapter 6 Characteristic and Fluctuation of Multi-fin FinFETs
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    Chapter 7 Variability in Nanoscale FinFET Technologies
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    Chapter 8 Random Telegraph Noise in Multi-gate FinFET/Nanowire Devices and the Impact of Quantum Confinement
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    Chapter 9 Investigations on Transport Properties of Poly-silicon Nanowire Transistors Featuring Independent Double-Gated Configuration Under Cryogenic Ambient
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    Chapter 10 Towards Drain Extended FinFETs for SoC Applications
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    Chapter 11 Modeling FinFETs for CMOS Applications
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    Chapter 12 Enhanced Quantum Effects in Room-Temperature Coulomb Blockade Devices Based on Ultrascaled finFET Structure
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    Chapter 13 Single-Electron Tunneling Transistors Utilizing Individual Dopant Potentials
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    Chapter 14 Single-Electron Transistor and Quantum Dots on Graphene
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    Chapter 15 Terahertz Response in Schottky Warp-Gate Controlled Single Electron Transistors
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Title
Toward Quantum FinFET
Published by
Springer International Publishing, January 2013
DOI 10.1007/978-3-319-02021-1
ISBNs
978-3-31-902020-4, 978-3-31-902021-1, 978-3-31-934914-5
Editors

Weihua Han, Zhiming M. Wang

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X Demographics

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 47 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Korea, Republic of 1 2%
Unknown 46 98%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 16 34%
Researcher 13 28%
Student > Master 9 19%
Student > Doctoral Student 3 6%
Other 1 2%
Other 2 4%
Unknown 3 6%
Readers by discipline Count As %
Engineering 31 66%
Materials Science 6 13%
Physics and Astronomy 5 11%
Unknown 5 11%