首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Modeling the tuning of lasing in liquid crystal based one-dimensional photonic crystals using the finite difference timedomain method
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Modeling the tuning of lasing in liquid crystal based one-dimensional photonic crystals using the finite difference timedomain method

机译:使用时域有限差分法对基于液晶的一维光子晶体中的激光调谐进行建模

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摘要

In this work, a numerical study based on the Finite Difference Time-Domain Method to determine the lasing from a finite one-dimensional Photonic Crystal composed by Porous Silicon and Liquid Crystal is proposed. As a consequence of the zero density of states in the Band Gap and the high Density of States at its edges, the emission is inhibited in the Gap and stimulated in its edges. We investigate the conditions where light emitted by a Gaussian source embedded in the Photonic Crystal can be switched into a monochromatic emission. We present the tuning of the lasing by changing the Density of States due to the tunability of the liquid crystal dielectric function.
机译:在这项工作中,基于有限差分时域法确定由多孔硅和液晶组成的有限一维光子晶体的激光发射的数值研究被提出。由于带隙中的状态密度为零,并且其边缘处的状态密度很高,因此发射在间隙中受到抑制,并在其边缘受到激发。我们研究了嵌入光子晶体的高斯光源发出的光可以转换为单色光的条件。由于液晶介电功能的可调谐性,我们通过改变状态的密度来表示激光的调谐。

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