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    Effect of Process Parameters on the Fabrication of Hybrid Natural Fiber Composites Fabricated via Compression Moulding Process: Journal of Natural Fibers: Vol 19, No 16

    Effect of Process Parameters on the Fabrication of Hybrid Natural Fiber Composites Fabricated via Compression Moulding Process: Journal of Natural Fibers: Vol 19, No 16


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    The field of fiber optics has seen a tremendous growth in the past few decades. The technology that started with the transmission of telephone conversations has now evolved to revolutionize the internet, healthcare, and entertainment industries. The demand for faster and more efficient communication systems has led to the development of new fibers with better characteristics. Hybrid fibers are particularly gaining traction due to their unique properties. Hybrid fibers are made by combining two or more types of materials with different refractive indices. These fibers have the capability to transmit both light and sound, making them valuable in applications such as telecommunications, sensing, and high-power laser delivery systems. One of the critical factors influencing the quality and performance of hybrid fibers is the beam parameters used during fabrication. Beam parameters refer to various characteristics of a laser beam, such as its intensity distribution, polarization state, wavelength, and pulse duration. With advancements in laser technology over recent years, it is now possible to modify these parameters precisely. This ability has enabled researchers and manufacturers to improve the quality of hybrid fibers significantly. For example, tailoring the beam intensity distribution can help reduce distortion caused by mode coupling between different fiber cores. Similarly, controlling beam polarization can help reduce birefringence-induced attenuation. Another critical parameter that affects hybrid fiber fabrication is pulse duration. Shorter pulses can induce less thermal damage on fiber materials during processing and result in higher-quality optical components. However, there exists an optimum range where shorter pulses produce better results before falling off at extremely short timescales. Advancements in beam shaping also present exciting possibilities for hybrid fiber fabrication. Researchers have demonstrated that using shaped beams can result in modified refractive index profiles along with significant improvements in core symmetry—resulting in enhanced modal selectivity. In conclusion, while there have been immense strides made in hybrid fiber fabrication over recent years; several challenges still exist for scaling up production while maintaining consistent quality output. Nevertheless, focusing on improving beam parameters represents a promising avenue for future research. Tailoring beam characteristics such as intensity distribution, polarization state, wavelength, and pulse duration can help overcome several hybrid fiber fabrication challenges. As such, it is a


    Effect of Process Parameters on the Fabrication of Hybrid Natural Fiber Composites Fabricated via Compression Moulding Process: Journal of Natural Fibers: Vol 19, No 16
    Image description: Effect of Process Parameters on the Fabrication of Hybrid Natural Fiber Composites Fabricated via Compression Moulding Process: Journal of Natural Fibers: Vol 19, No 16


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