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Programmable Crossbar Quantum-dot Cellular Automata Circuits

Authors :
Kalogeiton, Vicky S.
Papadopoulos, Dim P.
Liolis, Orestis
Mardiris, Vassilios A.
Sirakoulis, Georgios Ch.
Karafyllidis, Ioannis G.
Publication Year :
2016

Abstract

Quantum-dot fabrication and characterization is a well-established technology, which is used in photonics, quantum optics and nanoelectronics. Four quantum-dots placed at the corners of a square form a unit cell, which can hold a bit of information and serve as a basis for Quantum-dot Cellular Automata (QCA) nanoelectronic circuits. Although several basic QCA circuits have been designed, fabricated and tested, proving that quantum-dots can form functional, fast and low-power nanoelectornic circuits, QCA nanoelectronics still remain at its infancy. One of the reasons for this is the lack of design automation tools, which will facilitate the systematic design of large QCA circuits that contemporary applications demand. Here we present novel, programmable QCA circuits, which are based on crossbar architecture. These circuits can be programmed to implement any Boolean function in analogy to CMOS FPGAs and open the road that will lead to full design automation of QCA nanoelectronic circuits. Using this architecture we designed and simulated QCA circuits that proved to be area efficient, stable and reliable.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1604.07803
Document Type :
Working Paper