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Optimization of a negative index photonic crystal slab at optical wavelength

机译:负折射率光子晶体平板在光波长的优化

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There has been an increasing interest in using photonic crystals as negative refraction index slabs for integrated nanophotonics. According to the superlensing criteria, a refractive index equal to -1 is needed to operate at an arbitrary wavelength [1-2]. The field distribution is the result of multiple propagation phenomena such as reflection, diffraction, self collimation and negative refraction. We report on the optimization of focusing properties of a triangular air hole lattice etched in a I1I-V semiconductor matrix and present the demonstration of negative refraction by FDTD 3D calculations. Under isotropy and finite length conditions, light transmission in the second band was investigated for an incident wave tilted by 0°, 2°, 7° and 15° (E Field parallel to the air holes). The advantage of our method lies in the existence of Fabry-Perot effect resulting of interferences between the front and the rear interface of the slab. From the comparison of each transmission spectrum, the filling factor was adjusted to obtain simultaneously n = -1 and a maximum of signal to operate at a wavelength of 1.55 micrometers. At least, the validity of this method to produce an intensity maximum behind the slab was checked by mapping the field with FDTD 3D simulations.
机译:使用光子晶体作为集成纳米光子学的负折射率平板的兴趣日益浓厚。根据超透镜标准,需要等于-1的折射率才能在任意波长[1-2]下工作。场分布是多种传播现象的结果,例如反射,衍射,自准直和负折射。我们报告了在II-V半导体矩阵中蚀刻的三角形气孔晶格的聚焦特性的优化,并通过FDTD 3D计算展示了负折射的演示。在各向同性和有限长度条件下,针对入射波分别倾斜0°,2°,7°和15°(E场平行于气孔)研究了第二波段的光传输。我们的方法的优点在于存在法布里-珀罗效应,该效应是由于板的前后界面之间的干扰引起的。从每个透射光谱的比较,调整填充因子,以同时获得n = -1和最大信号波长,以在1.55微米的波长下工作。至少,通过使用FDTD 3D模拟对磁场进行映射,可以检验此方法在平板后面产生最大强度的有效性。

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