Title
Design And Fabrication Of Cswap Gate Based On Nano-Electromechanical Systems
Abstract
In order to reduce undesired heat dissipation, reversible logic offers a promising solution where the erasure of information can be avoided to overcome the Landauer limit. Among the reversible logic gates, Fredkin (CSWAP) gate can be used to compute any Boolean function in a reversible manner. To realize reversible computation gates, Nano-electromechanical Systems (NEMS) offer a viable platform, since NEMS can be produced en masse using microfabrication technology and controlled electronically at high-speeds. In this work-in-progress paper, design and fabrication of a NEMS-based implementation of a CSWAP gate is presented. In the design, the binary information is stored by the buckling direction of nanomechanical beams and CSWAP operation is accomplished through a mechanism which can selectively allow/block the forces from input stages to the output stages. The gate design is realized by fabricating NEMS devices on a Silicon-on-Insulator substrate.
Year
DOI
Venue
2016
10.1007/978-3-319-40578-0_12
REVERSIBLE COMPUTATION, RC 2016
Keywords
Field
DocType
Reversible logic, CSWAP gate, NEMS, Buckling, Nanomechanical computation
Boolean function,Logic gate,Computer science,Electronic engineering,Theoretical computer science,Nanoelectromechanical systems,Nano-,Fabrication,Microfabrication,Erasure,Computation
Conference
Volume
ISSN
Citations 
9720
0302-9743
0
PageRank 
References 
Authors
0.34
0
4
Name
Order
Citations
PageRank
Mert Yüksel100.34
Selçuk Oguz Erbil200.34
Atakan B. Ari300.34
M. Selim Hanay400.34