<p>The theoretical model developed for electromagnetic wave propagation at uniform plasma-lithium fluoride-uniform plasma waveguide structure has yielded insightful results, demonstrating the significant influence of collision frequency, plasma frequency, and waveguide thickness on the propagation characteristics. The normalized phase constant, attenuation, propagation length, and penetration depth exhibit clear dependencies on these parameters, which are crucial for optimizing waveguide design. These results offer promising applications in sensing systems, integrated circuits, and subwavelength optics in THz frequency regimes.</p>

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Guided mode in LiF filled slab waveguide bounded by uniform plasma

  • Tayyaba Zia,
  • Liu Bangfan,
  • Zainab Falah Khudhair,
  • Mohamed Shaban,
  • Sameerah I. Al-Saeedi,
  • M. Chethan,
  • S. K. Sunori,
  • Satish Choudhury,
  • Ishant Arora,
  • Sultonmakhmud Polvonov,
  • Bekzod Madaminov,
  • M. Iftikhar

摘要

The theoretical model developed for electromagnetic wave propagation at uniform plasma-lithium fluoride-uniform plasma waveguide structure has yielded insightful results, demonstrating the significant influence of collision frequency, plasma frequency, and waveguide thickness on the propagation characteristics. The normalized phase constant, attenuation, propagation length, and penetration depth exhibit clear dependencies on these parameters, which are crucial for optimizing waveguide design. These results offer promising applications in sensing systems, integrated circuits, and subwavelength optics in THz frequency regimes.