Full polarization conical dispersion and zero-refractive-index in two-dimensional photonic hypercrystals

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Abstract

Photonic conical dispersion has been found in either transverse magnetic or transverse electric polarization, and the predominant zero-refractive-index behavior in a two-dimensional photonic crystal is polarization-dependent. Here, we show that two-dimensional photonic hypercrystals can be designed that exhibit polarization independent conical dispersion at the Brillouin zone center, as two sets of triply-degenerate point for each polarization are accidentally at the same Dirac frequency. Such photonic hypercrystals consist of periodic dielectric cylinders embedded in elliptic metamaterials, and can be viewed as full-polarized near zero-refractive-index materials around Dirac frequency by using average eigen-field evaluation. Numerical simulations including directional emissions and invisibility cloak are employed to further demonstrate the double-zero-index characteristics for both polarizations in the photonic hypercrystals.

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Wang, J. R., Chen, X. D., Zhao, F. L., & Dong, J. W. (2016). Full polarization conical dispersion and zero-refractive-index in two-dimensional photonic hypercrystals. Scientific Reports, 6. https://doi.org/10.1038/srep22739

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