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Anomalous Birefringence and Nonlinearity Enhancement of As2s3 and As2s5 Filled D-shape Fiber for Optical Communication

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dc.contributor.author Hassan, Md Mehedi
dc.contributor.author Ahmed, Kawsar
dc.contributor.author Paul, Bikash Kumar
dc.contributor.author Hossain, Md Nadim
dc.contributor.author Zahran, Fahad Ahmed Al
dc.date.accessioned 2022-03-20T04:43:10Z
dc.date.available 2022-03-20T04:43:10Z
dc.date.issued 2021
dc.identifier.uri http://dspace.daffodilvarsity.edu.bd:8080/handle/123456789/7538
dc.description.abstract An elliptical core-based D-shape photonic crystal fiber (PCF) has been proposed with achieving extraordinary optical properties in this paper. We deeply observed and evaluated the performance of the designed D-PCF by doping the materials (As2S3 and As2S5) separately into the core region with the variation of the eccentricities (core size). After the whole analysis, this D-PCF prefers the As2S3 core material because it produces a better performance of all the optical features compared to the As2S5 material. The results of the raised PCF shows that the maximum nonlinearity of 9.114 × 104 W−1 km−1, the extreme-high birefringence of 0.254, the better power fraction of 99.51%, the high numerical aperture of 0.78, the large negative dispersion of −2560.12 ps/(nm-km), and the low beat length of 7.09 μm, etc. The finite element method (FEM) has been applied to simulate the optical characteristics and a perfectly matched layer (PML) is used as a boundary condition. So, the above mentioned remarkable outcomes of the designed D-PCF makes it a robust candidate in many helpful applications like biomedical imaging, telecom, super-continuum generation, and polarization-maintaining signal processing. en_US
dc.language.iso en_US en_US
dc.publisher Physica Scripta en_US
dc.subject Anomalous en_US
dc.subject Nonlinearity en_US
dc.subject As2S3 en_US
dc.subject As2S5 en_US
dc.subject D-shape en_US
dc.subject Fiber en_US
dc.subject Optical communication en_US
dc.title Anomalous Birefringence and Nonlinearity Enhancement of As2s3 and As2s5 Filled D-shape Fiber for Optical Communication en_US
dc.type Article en_US


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