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Multichannel filter based on tunable fibonacci quasi-periodic structure for one-dimensional magnetized ternary plasma photonic crystal

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Abstract In this paper, we propose an one-dimensional magnetized plasma photonic crystal based on the ternary Fibonacci quasi-period structure, and use the transmission matrix method (TMM) to study the terahertz… Click to show full abstract

Abstract In this paper, we propose an one-dimensional magnetized plasma photonic crystal based on the ternary Fibonacci quasi-period structure, and use the transmission matrix method (TMM) to study the terahertz band comb-like multichannel filtering properties, which is different from the periodic structure multichannel properties introduced by the plasma defect or dielectric defect. Second, we give the calculation formula of the transmission matrix of the model, third, we find the numerical relationship between the number of Fibonacci sequences and the number of channels. Higher relative refractive index improves the filter performance of comb-like channels. The effect of the length of each layer on the number of channels and the frequency of adjacent comb-like channels is different from that of traditional periodic multichannel filters. The detuning of magnetic field can increase the number of filtering channels, and different incident angles have different phenomena.

Keywords: fibonacci quasi; one dimensional; photonic crystal; dimensional magnetized; structure; plasma photonic

Journal Title: Optik
Year Published: 2020

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