Novel Three-state Quantum Dot Gate Field Effect Transistor

Fabrication, Modeling and Applications

Authors: Karmakar, Supriya

  • Introduces a novel semiconductor device for multi valued logic implementation which can make reader to continue new research in this direction in future
  • Provides details of step-by-step foundation of quantum dot gate field effect transistor
  • Discusses three state logic design fundamentals
  • Entails the simple comparator design and its application in designing ADC and DAC
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  • Due: November 4, 2016
  • ISBN 978-81-322-3490-6
  • Free shipping for individuals worldwide
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About this book

The book presents the fabrication and circuit modeling of quantum dot gate field effect transistor (QDGFET) and quantum dot gate NMOS inverter (QDNMOS inverter). It also introduces the development of a circuit model of QDGFET based on Berkley Short Channel IGFET model (BSIM). Different ternary logic circuits based on QDGFET are also investigated in this book. Advanced circuit such as three-bit and six bit analog-to-digital converter (ADC) and digital-to-analog converter (DAC) were also simulated.

About the authors

Dr. Supriya Karmakar is currently working as an Engineer in Intel Corporation, Hillsboro, Oregon, USA. Dr. Karmakar completed his PhD in Electrical Engineering from University of Connecticut in the year 2011. The specialization was "Novel Three State Quantum Dot Gate Field Effect Transistor: Fabrication, Modeling and Applications". He has five years experience in semiconductor device fabrication and circuit modeling in his PhD academic career in Department of Electrical and Computer Engineering, University of Connecticut. He has modified different photolithography processes and metal organic chemical vapor deposition (MOCVD) techniques to fabricate various types of semiconductor devices like quantum dot gate field effect transistor (QDGFET), quantum dot gate non-volatile memory (QDNVM), quantum dot channel field effect transistors (QDCFET), Solar Cells etc. for different projects. He is also an expert in designing different types of masks for photolithography as well as E-Beam lithography. Dr. Karmakar has also published more than 30 papers in international peer-reviewed journals and conference proceedings.

Table of contents (9 chapters)

  • Introduction: Multistate Devices and Logic

    Karmakar, Supriya

    Pages 1-6

  • Quantum Dot Gate Field-Effect Transistor: Device Structures

    Karmakar, Supriya

    Pages 7-20

  • Quantum Dot Gate Field-Effect Transistors: Fabrication and Characterization

    Karmakar, Supriya

    Pages 21-40

  • Quantum Dot Gate Field-Effect Transistors: Theory and Device Modeling

    Karmakar, Supriya

    Pages 41-54

  • Quantum Dot Gate NMOS Inverter

    Karmakar, Supriya

    Pages 55-63

Buy this book

eBook $99.00
price for USA (gross)
  • ISBN 978-81-322-1635-3
  • Digitally watermarked, DRM-free
  • Included format: PDF, EPUB
  • ebooks can be used on all reading devices
  • Immediate eBook download after purchase
Hardcover $129.00
price for USA
  • ISBN 978-81-322-1634-6
  • Free shipping for individuals worldwide
  • Usually dispatched within 3 to 5 business days.
Softcover $129.00
price for USA
  • Customers within the U.S. and Canada please contact Customer Service at 1-800-777-4643, Latin America please contact us at +1-212-460-1500 (Weekdays 8:30am – 5:30pm ET) to place your order.
  • Due: November 4, 2016
  • ISBN 978-81-322-3490-6
  • Free shipping for individuals worldwide
Rent the ebook  
  • Rental duration: 1 or 6 month
  • low-cost access
  • online reader with highlighting and note-making option
  • can be used across all devices
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Bibliographic Information

Bibliographic Information
Book Title
Novel Three-state Quantum Dot Gate Field Effect Transistor
Book Subtitle
Fabrication, Modeling and Applications
Authors
Copyright
2014
Publisher
Springer India
Copyright Holder
Springer India
eBook ISBN
978-81-322-1635-3
DOI
10.1007/978-81-322-1635-3
Hardcover ISBN
978-81-322-1634-6
Softcover ISBN
978-81-322-3490-6
Edition Number
1
Number of Pages
XIV, 134
Number of Illustrations and Tables
72 b/w illustrations, 49 illustrations in colour
Topics