Design of Arithmetic Circuits in Quantum Dot Cellular Automata Nanotechnology

This research monograph focuses on the design of arithmetic circuits in Quantum Dot Cellular Automata (QCA). Using the fact that the 3-input majority gate is a primitive in QCA, the book sets out to discover hitherto unknown properties of majority logic in the context of arithmetic circuit designs....

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Bibliographic Details
Main Authors: Sridharan, K., Pudi, Vikramkumar (Author)
Format: eBook
Language:English
Published: Cham Springer International Publishing 2015, 2015
Edition:1st ed. 2015
Series:Studies in Computational Intelligence
Subjects:
Online Access:
Collection: Springer eBooks 2005- - Collection details see MPG.ReNa
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245 0 0 |a Design of Arithmetic Circuits in Quantum Dot Cellular Automata Nanotechnology  |h Elektronische Ressource  |c by K. Sridharan, Vikramkumar Pudi 
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260 |a Cham  |b Springer International Publishing  |c 2015, 2015 
300 |a XV, 116 p. 100 illus., 66 illus. in color  |b online resource 
505 0 |a Introduction -- QCA Terminology -- Design of Basic Digital Circuits in QCA -- Design of Ripple Carry and Prefix Adders in QCA -- Design of A Hybrid Adder in QCA -- Design of a Multiplier in QCA -- Discrete Hadamard Transform Computation in QCA -- Study of Thermal Robustness of QCA Designs -- The Road Ahead -- A Tutorial on Qcadesigner 
653 |a Atoms 
653 |a Quantum computers 
653 |a Atomic, Molecular and Chemical Physics 
653 |a Computational intelligence 
653 |a Computational Intelligence 
653 |a Quantum Computing 
653 |a Electronic circuits 
653 |a Electronic Circuits and Systems 
653 |a Molecules 
700 1 |a Pudi, Vikramkumar  |e [author] 
041 0 7 |a eng  |2 ISO 639-2 
989 |b Springer  |a Springer eBooks 2005- 
490 0 |a Studies in Computational Intelligence 
028 5 0 |a 10.1007/978-3-319-16688-9 
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520 |a This research monograph focuses on the design of arithmetic circuits in Quantum Dot Cellular Automata (QCA). Using the fact that the 3-input majority gate is a primitive in QCA, the book sets out to discover hitherto unknown properties of majority logic in the context of arithmetic circuit designs. The pursuit for efficient adders in QCA takes two forms. One involves application of the new results in majority logic to existing adders. The second involves development of a custom adder for QCA technology. A QCA adder named as hybrid adder is proposed and it is shown that it outperforms existing multi-bit adders with respect to area and delay. The work is extended to the design of a low-complexity multiplier for signed numbers in QCA. Furthermore the book explores two aspects unique to QCA technology, namely thermal robustness and the role of interconnects. In addition, the book introduces the reader to QCA layout design and simulation using QCADesigner. Features & Benefits: This research-based book: ·         Introduces the reader to Quantum Dot Cellular Automata, an emerging nanotechnology. ·         Explores properties of majority logic. ·         Demonstrates application of the properties to design efficient arithmetic circuits. ·         Guides the reader towards layout design and simulation in QCADesigner