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      Polarization manipulation on step-index composite polymer beam splitters for photonics circuitry

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          Abstract

          This paper presents composite beam splitters realized with polymer materials for developing photonic integrated circuits. We used organic-inorganic hybrid polymer materials to form this composite beam splitter realized with step-index (SI) core profiles. We used the alternating direction implicit technique of the Rsoft CAD BeamPROP solver to design and analyze these beam splitters. We successfully examined and manipulated the beam splitter’s polarization dependency to obtain a 99% output efficiency with a 50:50 splitting ratio. The SI beam splitter exhibits an excess loss of 0.014 dB. When we apply polarized light in this beam splitter, the excess loss increases to 2 dB, and this loss gradually decreases as the angle of incident light increases. The excess loss reduces to 0.05 dB at the 31-degree angles of the incident polarized light. We also investigated the crosstalk of this beam splitter by varying the wavelength, and it is evident that the lowest crosstalk is −19.77 dB at the polarized angle of 31°.

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          Most cited references34

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          A New Calculus for the Treatment of Optical SystemsI Description and Discussion of the Calculus

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            Rationale and challenges for optical interconnects to electronic chips

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              Scalable 3D dense integration of photonics on bulk silicon.

              We experimentally show vertically stacked, multi-layer, low-temperature deposited photonics for integration on processed microelectronics. Waveguides, microrings, and crossings are fabricated out of 400°C PECVD Si3N4 and SiO2 in a two layer configuration. Waveguide losses of ~1 dB/cm in the L-band are demonstrated using standard processing and without post-deposition annealing, along with vertically separated intersections showing -0.04 ± 0.002 dB/cross. Finally 3D drop rings are shown with 25 GHz channels and 24 dB extinction ratio.
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                Author and article information

                Contributors
                Journal
                Heliyon
                Heliyon
                Heliyon
                Elsevier
                2405-8440
                17 January 2024
                15 February 2024
                17 January 2024
                : 10
                : 3
                : e24585
                Affiliations
                [a ]Physics Discipline, Khulna University, Khulna, 9208, Bangladesh
                [b ]Faculty of Science and Technology, Keio University, Yokohama, 223-8522, Japan
                Author notes
                []Corresponding author. ofr_ju@ 123456phy.ku.ac.bd
                Article
                S2405-8440(24)00616-9 e24585
                10.1016/j.heliyon.2024.e24585
                10838734
                38317907
                77c596f7-908b-48bc-97ff-20c659b24ef6
                © 2024 Published by Elsevier Ltd.

                This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

                History
                : 23 September 2023
                : 9 January 2024
                : 10 January 2024
                Categories
                Research Article

                polarization manipulation,step-index core,alternating direction implicit (adi) method,composite coupler,polymer optical waveguides

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