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Fiber design and performance analyses for optical multiplexing: terahertz optical communications

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dc.contributor.author Kabir, Md Anowar
dc.contributor.author Kumar Paul, Bikash
dc.contributor.author Hossain, Md Selim
dc.contributor.author Shahin Uddin, Muhammad
dc.contributor.author Morshed, Monir
dc.date.accessioned 2025-11-13T06:03:25Z
dc.date.available 2025-11-13T06:03:25Z
dc.date.issued 2024-04-25
dc.identifier.uri http://dspace.daffodilvarsity.edu.bd:8080/handle/123456789/15550
dc.description Article en_US
dc.description.abstract Multiplexing is the process of combining multiple signals at a single channel. Orbital Angular Momentum (OAM) is one of the main multiplexing techniques for optical data transmissions. This paper examines and suggests a hollow core with four layers of semilunar air-hole-shaped circular photonic crystal fiber (PCF) capable of transmitting terahertz (THz) OAM information-carrying modes. By using the full vector finite element method (FEM), OAM multiplexing is analyzed for the proposed fiber. All the THz OAM-based factors are analyzed at a frequency band ranging from 400 GHz to 800 GHz. For the first time, some important PCF factors such as effective refractive index difference (ERID), dispersion profile (DP), OAM purity, confinement loss (CL), effective mode area (ERA), and numerical aperture (NA) are quantitatively discussed with applications. The proposed design supports 50 OAM modes with ERID up to 10−3. The PCF has a CL of approximately 10–10 dB cm−1 and the lowest dispersion profile is 0.3581 ps/THz/cm. Furthermore, the OAM purity is around 97%. Nonetheless, the proposed design can be used in THz-OAM transmission and high optical fiber communications. en_US
dc.language.iso en_US en_US
dc.subject Multiplexing Orbital Angular Momentum (OAM) en_US
dc.subject Photonic Crystal Fiber (PCF) en_US
dc.subject Terahertz (THz) transmission en_US
dc.subject Full Vector Finite Element Method (FEM) en_US
dc.subject Effective Refractive Index Difference (ERID) en_US
dc.title Fiber design and performance analyses for optical multiplexing: terahertz optical communications en_US
dc.type Article en_US


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