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Electrically Tunable Propagation Properties of the Liquid Crystal-Filled Terahertz Fiber
2018
Applied Sciences
A bandgap-guiding microstructured fiber for terahertz (THz) radiation was designed by infiltrating the cladding air holes with nematic liquid crystal. Structural parameter dependence of the photonic bandgaps, polarization-dependent bandgap splitting, and electrically tunable propagation properties of the designed fiber were investigated theoretically by using the finite-element method. An external electric field applied across the designed fiber can broaden the effective transmission bandwidth
doi:10.3390/app8122487
fatcat:mexxvxmsvfg4jkhfbbgqfi4c3e