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Dispersion engineering for multifunctional photonic crystal based nanophotonic devices at infrared wavelengths

机译:基于多功能光子晶体的纳米光子器件在红外波长的色散工程

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摘要

TIn this paper, we report the design, the fabrication and the near field optical microscopy of Negative Index Material (NIM) and GRadient INdex (GRIN) photonic crystal based flat lenses. They were fabricated on the basis of an InPbased photonic crystal technological platform including hole and pillar networks fabrication at nanometer scale. They show the possibility of sub-wavelength focusing by all dielectric periodic or quasi-periodic crystals. Particular attention is paid to the analysis of SNOM images using three-dimensional simulations. Finally, in order to demonstrate the versatility of our approach, a two-dimensional cloaking device mixing hole and pillar arrays is evaluated to pave the way for future integrated nanophotonic devices with complex functionalities.
机译:在本文中,我们报告了基于负折射率材料(NIM)和基于GRadient Index(GRIN)光子晶体的平面透镜的设计,制造和近场光学显微镜。它们是在基于InP的光子晶体技术平台的基础上制造的,该平台包括纳米尺度的孔和柱网络的制造。它们显示了所有介电周期或准周期晶体对亚波长聚焦的可能性。特别注意使用三维模拟对SNOM图像进行分析。最后,为了证明我们方法的多功能性,对混合孔和柱阵列的二维隐身设备进行了评估,从而为将来的具有复杂功能的集成纳米光子设备铺平了道路。

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