【摘 要】
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Introducing the finite difference time domain method and perfect match layer absorbing boundary condition, the electro-tunable localized modes in two-dimensional (2D) nematic-liquid-crystal photonic crystal with a point defect (1PD2D-NLCPC) are investigat
【出 处】
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ChineseOpticsLetters
论文部分内容阅读
Introducing the finite difference time domain method and perfect match layer absorbing boundary condition, the electro-tunable localized modes in two-dimensional (2D) nematic-liquid-crystal photonic crystal with a point defect (1PD2D-NLCPC) are investigated by numerical simulation. The numerical simulations show that as the direction of the external electrical field varies, the band gap in the 1PD2D-LCPC changes; when the wavelength in the band gap is the wavelength of the sine source wave, the most of optical field energy is localized in the point defect; therefore manipulating the direction of the external electrical field causes the change of the localized mode.
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