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Journal of Lasers, Optics & Photonics

ISSN: 2469-410X

Open Access

Amelia Daisy

Department of Laser Optics, University of Arizona, Tucson, USA

Publications
  • Review Article   
    Flattened Dispersion Topological Photonic Crystal Fibres with Almost No Dispersion
    Author(s): Amelia Daisy*

    Photonic precious stone strands are profoundly alluring as nonlinear media as they join a huge nonlinear coefficient and an exceptionally adaptable zero scattering frequency adaptability not viewed as in some other medium. Nonetheless, the high scattering slant at the zero-scattering frequency showed so far is exceptionally restricting to the helpful data transfer capacity. We propose another fibre configuration containing a mixture centre district with three-overlay evenness that empowers exceptional scattering control while keeping up with low misfortune and a high nonlinear coefficient. The least scattering incline got is or one significant degree lower than for regular slant diminished nonlinear filaments. Nonlinear photonic gem strands were among the principal fibre types to show the upsides of the innovation and they have from that point forward demonstrated .. Read More»
    DOI: 10.37421/2469-410X.2022.9.35

    Abstract HTML PDF

Google Scholar citation report
Citations: 279

Journal of Lasers, Optics & Photonics received 279 citations as per Google Scholar report

Journal of Lasers, Optics & Photonics peer review process verified at publons

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