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Title
Toward Chirality-Encoded Domain Wall Logic
DGIST Authors
Omari, Khalid A.Broomhall, Thomas J.Dawidek, Richard W. S.Allwood, Dan A.Bradley, Ruth C.Wood, Jonathan M.Fry, Paul W.Rosamond, Mark C.Linfield, Edmund H.Im, Mi‐YoungFischer, Peter J.Hayward, Tom J.
Issued Date
2019-03
Citation
Omari, Khalid A. (2019-03). Toward Chirality-Encoded Domain Wall Logic. doi: 10.1002/adfm.201807282
Type
Article
Article Type
Article
Author Keywords
chiralitydomain wallsmagnetic logicnanomagnetismspintronics
Keywords
ChiralityComputation theoryComputer circuitsMagnetic domainsMagnetizationNanomagneticsNanowiresNetwork architectureSpintronicsSpintronicsTexturesComputational architectureDegree of fidelityEncoded informationFerromagnetic nanowireMagnetic logicMagnetization dynamicsNanomagnetic logicNanomagnetismsDomain walls
ISSN
1616-301X
Abstract
Nonvolatile logic networks based on spintronic and nanomagnetic technologies have the potential to create high-speed, ultralow power computational architectures. This article explores the feasibility of “chirality-encoded domain wall logic,” a nanomagnetic logic architecture where data are encoded by the chiral structures of mobile domain walls in networks of ferromagnetic nanowires and processed by the chiral structures' interactions with geometric features of the networks. High-resolution magnetic imaging is used to test two critical functionalities: the inversion of domain wall chirality at tailored artificial defect sites (logical NOT gates) and the chirality-selective output of domain walls from 2-in-1-out nanowire junctions (common operation to AND/NAND/OR/NOR gates). The measurements demonstrate both operations can be performed to a good degree of fidelity even in the presence of complex magnetization dynamics that would normally be expected to destroy chirality-encoded information. Together, these results represent a strong indication of the feasibility of devices where chiral magnetization textures are used to directly carry, rather than merely delineate, data. © 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
URI
http://hdl.handle.net/20.500.11750/9674
DOI
10.1002/adfm.201807282
Publisher
Wiley-VCH Verlag
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