Design and finite element analysis of a single-mode modified circular microstructured optical fiber for high negative dispersion and high nonlinearity across e to L communication bands

dc.contributor.authorHalder, A.
dc.contributor.authorAnower, M.S.
dc.contributor.authorEmon, W.
dc.contributor.authorTanshen, M.R.
dc.contributor.authorShajib, M.S.U.
dc.contributor.conference26th International Conference on Computer and Information Technology, ICCIT 2023 (13 Dec 2023 - 15 Dec 2023 : Cox's Bazar)
dc.date.issued2023
dc.description.abstractIn this study, we report the design and finite element analysis of a new single-mode modified circular microstructured optical fiber (MC-MOF) designed for strong negative dispersion and nonlinearity over the E to L communication bands. We use modern simulation tools to conduct a thorough finite element study on the fiber's dispersion and nonlinear properties. At 1550 nm operating wavelength, our results show an improvement in both negative dispersion (-564.3 ps/(nm•km)) and nonlinearity (66.54 W-1km- 1), making the fiber ideal for a variety of advanced photonic applications such as ultrafast optical communications and nonlinear optical signal processing. At a wavelength of 1550 nm, a numerical aperture of 0.5369 shows that the proposed MC-MOF can capture light from a broader variety of angles, allowing for greater light collecting and efficient data transmission. This study not only sheds light on the fundamental behavior of the proposed MOF, but it also indicates single mode functioning (Veff < 2.405) over the E to L communication bands.
dc.identifier.citation26th International Conference on Computer and Information Technology, ICCIT 2023, 2023, pp.1-5
dc.identifier.doi10.1109/ICCIT60459.2023.10441635
dc.identifier.isbn9798350359015
dc.identifier.orcidHalder, A. [0000-0002-1077-5059]
dc.identifier.urihttps://hdl.handle.net/11541.2/42114
dc.language.isoen
dc.publisherIEEE
dc.publisher.placeUS
dc.rightsCopyright 2023 IEEE
dc.source.urihttps://doi.org/10.1109/ICCIT60459.2023.10441635
dc.subjectdispersion compensation
dc.subjectfinite element method
dc.subjectmicrostructured optical fiber
dc.subjectnonlinear coefficient
dc.subjectnumerical aperture
dc.subjectsingle mode operation
dc.titleDesign and finite element analysis of a single-mode modified circular microstructured optical fiber for high negative dispersion and high nonlinearity across e to L communication bands
dc.typeConference paper
pubs.publication-statusPublished
ror.mmsid9916952829801831

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