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Single-mode fiber multi-level all-optical switching using GSST-graphene oxide hybrid thin film structure

dc.contributor.authorGan, Soon Xinen
dc.contributor.authorChew, Jing Wenen
dc.contributor.authorNg, Kok Binen
dc.contributor.authorTey, Lian Sengen
dc.contributor.authorChong, Wu Yien
dc.contributor.authorGoh, Boon Tongen
dc.contributor.authorLai, Choon Kongen
dc.contributor.authorChoi, Duk Yongen
dc.contributor.authorMadden, Steveen
dc.contributor.authorAhmad, Harithen
dc.date.accessioned2025-05-23T05:25:21Z
dc.date.available2025-05-23T05:25:21Z
dc.date.issued2024-08-14en
dc.description.abstractGe2Sb2Se4Te1 (GSST) exhibits unprecedented broadband transparency over the infrared wavelength range and has emerged as a promising functional material in photonic applications that operate in the optical fiber telecommunication wavelength band. In this work, GSST and graphene oxide (GO) are integrated into an optical fiber link to achieve all-fiber non-volatile multilevel photonic memory. The GSST and GO (GSST-GO) duo-layer hybrid structure is sandwiched between two optical fiber ferrules, where the GO acts as a localized heat source to initiate the phase transition of GSST upon optical excitation. The GSST-GO-coated fiber exhibits a low insertion loss of 0.8 dB and a maximum readout contrast of about 32%, with at least five distinguished memory states. The response time of the device is measured in the range between 2.5 and 9.5 μs. This work serves as a proof of concept on implementing the GSST-GO duo-layer hybrid structure in optical fiber platform to realize all-fiber non-volatile multi-bit channel control or data storage.en
dc.description.sponsorshipThis work was funded by the Malaysia Ministry of Higher Education Fundamental Research Grant Scheme (No. FRGS/1/2019/STG02/UM/02/3).en
dc.description.statusPeer-revieweden
dc.identifier.issn0021-8979en
dc.identifier.otherORCID:/0000-0002-5339-3085/work/184100563en
dc.identifier.scopus85200980748en
dc.identifier.urihttp://www.scopus.com/inward/record.url?scp=85200980748&partnerID=8YFLogxKen
dc.identifier.urihttps://hdl.handle.net/1885/733751570
dc.language.isoenen
dc.rightsPublisher Copyright: © 2024 Author(s).en
dc.sourceJournal of Applied Physicsen
dc.titleSingle-mode fiber multi-level all-optical switching using GSST-graphene oxide hybrid thin film structureen
dc.typeJournal articleen
dspace.entity.typePublicationen
local.contributor.affiliationGan, Soon Xin; University of Malayaen
local.contributor.affiliationChew, Jing Wen; University of Malayaen
local.contributor.affiliationNg, Kok Bin; University of Malayaen
local.contributor.affiliationTey, Lian Seng; University of Malayaen
local.contributor.affiliationChong, Wu Yi; University of Malayaen
local.contributor.affiliationGoh, Boon Tong; University of Malayaen
local.contributor.affiliationLai, Choon Kong; The University of Sydneyen
local.contributor.affiliationChoi, Duk Yong; Department of Quantum Science & Technology, Research School of Physics, ANU College of Science and Medicine, The Australian National Universityen
local.contributor.affiliationMadden, Steve; Australian National Universityen
local.contributor.affiliationAhmad, Harith; University of Malayaen
local.identifier.citationvolume136en
local.identifier.doi10.1063/5.0211865en
local.identifier.pure6ae18ab3-21c7-42bf-8080-a831317d6172en
local.identifier.urlhttps://www.scopus.com/pages/publications/85200980748en
local.type.statusPublisheden

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