Title
4-output Programmable Spin Wave Logic Gate
Author
Mahmoud, A.N.N. (TU Delft Computer Engineering)
Vanderveken, Frederic (IMEC-Solliance)
Adelmann, Christoph (IMEC-Solliance)
Ciubotaru, Florin (IMEC-Solliance)
Hamdioui, S. (TU Delft Quantum & Computer Engineering) 
Cotofana, S.D. (TU Delft Computer Engineering) 
Contributor
Guerrero, J. (editor)
Department
Quantum & Computer Engineering
Date
2020
Abstract
To bring Spin Wave (SW) based computing paradigm into practice and develop ultra low power Magnonic circuits and computation platforms, one needs basic logic gates that operate and can be cascaded within the SW domain without requiring back and forth conversion between the SW and voltage domains. To achieve this, SW gates have to possess intrinsic fanout capabilities, be input-output data representation coherent, and reconfigurable. In this paper, we address the first and the last requirements and propose a novel 4-output programmable SW logic gate. First, we introduce the gate structure and demonstrate that, by adjusting the gate output detection method, it can parallelly evaluate any 4-element subset of the 2-input Boolean function set {(N)AND, (N)OR, and X(N)OR}. Furthermore, we adjust the structure such that all its 4 outputs produce SWs with the same energy and demonstrate that it can evaluate Boolean function sets while providing fanout capabilities ranging from 1 to 4. We validate our approach by instantiating and simulating different gate configurations such as 4-output AND/OR, 4-output XOR/XNOR, output energy balanced 4-output AND/OR, and output energy balanced 4-output XOR/XNOR by means of Object Oriented Micromagnetic Framework (OOMMF) simulations. Finally, we evaluate the performance of our proposal in terms of delay and energy consumption and compare it against existing state-of-the-art SW and 16 nm CMOS counterparts. The results indicate that for the same functionality, our approach provides 3× and 16× energy reduction, when compared with conventional SW and 16 nm CMOS implementations, respectively.
Subject
Energy
Programmable Logic Gate
Spin-wave
To reference this document use:
http://resolver.tudelft.nl/uuid:39087786-151b-47c0-add2-8e4915114211
DOI
https://doi.org/10.1109/ICCD50377.2020.00062
Publisher
IEEE, Piscataway
ISBN
978-1-7281-9711-1
Source
2020 IEEE 38th International Conference on Computer Design (ICCD): Proceedings
Event
38th IEEE International Conference on Computer Design, ICCD 2020, 2020-10-18 → 2020-10-21, Hartford, United States
Series
2020 IEEE 38TH INTERNATIONAL CONFERENCE ON COMPUTER DESIGN (ICCD 2020), 1063-6404
Part of collection
Institutional Repository
Document type
conference paper
Rights
© 2020 A.N.N. Mahmoud, Frederic Vanderveken, Christoph Adelmann, Florin Ciubotaru, S. Hamdioui, S.D. Cotofana