
Computing with Multi-Value Logic in Quantum Dot Cellular Automata
- English
- PDF
- Available on iOS & Android
Computing with Multi-Value Logic in Quantum Dot Cellular Automata
About this book
Meet the latest challenges in quantum computing with this cutting-edge volume
Miniaturization is one of the major forms (and drivers) of innovation in electronics and computing. In recent years, the rapid reduction in the size of semiconductors and other key elements of digital technology has created major challenges, which new technologies are being continuously mobilized to meet. Quantum dot cellular automata (QCA) is a technology with huge potential to meet these challenges, particularly if multi-value computing is brought to bear.
Computing with Multi-Value Logic in Quantum Dot Cellular Automata introduces this groundbreaking area of technology and its major applications. Using MATLAB ÂŽ software and a novel multi-value logic simulator, the book demonstrates that multi-value circuits with a function that approximates fuzzy logic are within reach of modern engineering and design. Rigorous and clear, this book offers a crucial introduction to the processes of designing multi-value logic circuits with QCA technology.
Readers will also find:
- The tools required to design fuzzy-quantum controllers with high processing speed
- Detailed discussion of topics including basic gate function, the energy consumption of QCA multi-value cells, and much more
- Extensive MATLAB ÂŽ data and other worked-through examples
Computing with Multi-Value Logic in Quantum Dot Cellular Automata is ideal for researchers and readers who are looking for an explanation of the basic concepts required to design multi-value circuits in this field.
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Information
Table of contents
- Cover
- Title Page
- Copyright
- Contents
- List of Figures
- List of Tables
- About the Authors
- Preface
- Introduction
- Chapter 1 Quantum Dots
- Chapter 2 Synthesis Methods of Quantum Dots and Applications
- Chapter 3 Overview of QCA
- Chapter 4 Polarization and Polarization Calculations in QCA (Quantum Calculations in QCA)
- Chapter 5 MultiâValued Cells Based on Polarization Calculations
- Chapter 6 Effect of Polarization for Two Adjacent Cells and Power Consumption in MultiâValued Cells
- Chapter 7 Structure of Basic Gates Using the Proposed Cells in MultiâValue QCA
- Chapter 8 Implementation of Ternary and Quaternary Basic Gates Using QQCASim and TQCASim
- Chapter 9 A Review of Literature on Memory Structures
- Chapter 10 Proposed PIM Cells and Their Fault Analysis in Binary QCA
- Chapter 11 Design Details of Binary Boolean Operators Using Basic PIM Cells: Proposing and Analyzing BasicâExtended Hypothesis
- Chapter 12 Proposed PIM Cells in Ternary QCA and Their Fault Analysis
- Chapter 13 Design Details of Ternary Boolean Operators Using Basic PIM Cells and Analysis of BasicâExtended Hypothesis
- Chapter 14 Conclusions and Suggestions
- References
- A Matrices
- B Electrostatic Energy Calculation
- Index
- EULA