由Tio2/Te层组成的一维周期光子晶体结构的近红外-可见光子带隙

Shalaw Saman Khalid, Sarkew Salah Abdulkareem, Sana Latif Ahmed, Sana Dishad Talib, Shahla Ahmed Ghidan
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引用次数: 0

摘要

在本文中,我们考虑了一维光子晶体状态的一些特征。利用传递矩阵法对二氧化钛和碲材料构成的周期性多层结构进行数值计算,发现该结构存在光子带隙,并确定该结构在可见光和红外光谱边界区存在光子带隙。我们的预测与光子带隙调谐很好地吻合。我们的简单模型还可以预测和解释入射角、波长和层数对光子带隙的影响。我们期望这种结构在微机械可调谐光学传感器和滤光片中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Near Infrared -Visible Photonic Bandgap in One-Dimensional Periodic Photonic Crystal Structure Composed of Tio2/Te Layers
In this present paper, we consider some features of the states of one-dimensional photonic crystals. Form the numerical results performed by transfer matrix method in periodic multilayer structure made of titanium dioxide and tellurium material, it is found that the structure possesses a photonic band gap it was determined that the structure has a photonic band gap in the borderline visible and infrared spectral region. Our predictions were in good agreement with the photonic bandgap tuning. Our simple model can also predict and explain the effect of incidence angle and wavelength and number of layers on the photonic bandgap. We expect such structures to play an important role in micromechanical tunable optical sensors and filters.
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