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Subwavelength plastic fiber for terahertz wave guiding
Conference paper

Subwavelength plastic fiber for terahertz wave guiding

Chi-Kuang Sun, Li-Jin Chen, Hung-Wen Chen and Ja-Yu Lu
Proceedings of SPIE - The International Society for Optical Engineering, Vol.6373, 63730F
2006

Abstract

Fiber Plastic Terahertz Waveguide Electronic Optical and Magnetic Materials Condensed Matter Physics Computer Science Applications Applied Mathematics Electrical and Electronic Engineering
We report a simple subwavelength-diameter plastic wire, similar to an optical fiber, for guiding terahertz wave with a low attenuation constant. With a large wavelength-to-fiber-core ratio, the fractional power delivered inside the lossy core is reduced, thus lowering the effective fiber attenuation constant. In our experiment, we adopt a polyethylene fiber with a 200-500 μm diameter for guiding terahertz waves in the frequency range of 0.2-0.5 THz in which the attenuation constant is reduced to the order of or less than 0.01 cm -1 . Direct free-space coupling efficiency, as high as 20%, can be achieved by using an off-axis parabolic mirror. Furthermore, all the plastic wires are easily available in our daily life without complex processes and expensive costs.

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