In ‘More-than-Moore’ technological trends, designing new devices with quantum dot nanostructure has become an emerging domain of research. Quantum dot cellular automata are one of the major paradigm shifts in the field of nanoscale computing. Quantum cellular automata (QCA) are possible alternatives to technology based on complementary metal-oxide semiconductors (CMOS) due to their ultralow power and high speed of operation up to terahertz frequency. Furthermore, QCA technology takes up a smaller area than CMOS and is based on the charge confinement protocol, rather than the charge dissipation protocol. A planar design of a QCA-based full-adder circuit has been designed in this study. The proposed full adder is achieved with a delay of only 0·25 clock cycles, which is remarkably shorter than that for available designs. The functionality of the proposed full adder is verified using the QCA Designer software tool. Further, the defect analysis of the circuit confirms the robustness of the design. Moreover, the proposed QCA design is highly fault tolerant, which is proved by the stuck-at-fault analysis performed on the device.
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27 June 2018
Research Article|
January 15 2018
Planar fault-tolerant quantum cellular automata full adder
Tamoghna Purkayastha, MTech;
Department of Computer Science and Engineering, Maulana Abul Kalam Azad University of Technology, Kolkata, India
(corresponding author: tamoghna986@gmail.com)
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Tanay Chattopadhyay, PhD;
Tanay Chattopadhyay, PhD
Mechanical operation
Sagardighi Thermal Power Project, West Bengal Power Development Corporation Ltd, Government of West Bengal Enterprise, Murshidabad, India
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Debashis De, PhD
Debashis De, PhD
Professor
Department of Computer Science and Engineering, Maulana Abul Kalam Azad University of Technology, Kolkata, India
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(corresponding author: tamoghna986@gmail.com)
Publisher: Emerald Publishing
Received:
March 13 2017
Accepted:
December 13 2017
Online ISSN: 2045-984X
Print ISSN: 2045-9831
ICE Publishing: All rights reserved
2018
Nanomaterials and Energy (2018) 7 (1): 9–15.
Article history
Received:
March 13 2017
Accepted:
December 13 2017
Citation
Purkayastha T, Chattopadhyay T, De D (2018), "Planar fault-tolerant quantum cellular automata full adder". Nanomaterials and Energy, Vol. 7 No. 1 pp. 9–15, doi: https://doi.org/10.1680/jnaen.17.00007
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