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Investigation of dual photonic and phononic bandgaps in two-dimensional phoxonic crystals with veins

机译:具有脉的二维光子晶体中双光子和声子带隙的研究

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摘要

Phoxonic crystal is a promising artificial periodic material for optomechanical systems and acoustooptical devices. In this paper, two-dimensional phoxonic crystals with veins in square, triangle and honeycomb lattices are investigated. Detailed discussion is presented on the variation of the photonic and phononic bandgaps with the geometry and lattice form of the structure. The results show that simultaneous large complete photonic and phononic bandgaps can exist over a wide range of geometry parameters for the square and honeycomb lattices. These large regions offer good tolerance for the technological realization and flexibility in designing this phoxonic crystal structure.
机译:光子晶体是用于光机械系统和声光设备的有前途的人工周期性材料。本文研究了具有正方形,三角形和蜂窝状晶格的二维光子晶体。详细讨论了光子和声子带隙随结构的几何形状和晶格形式的变化。结果表明,在较大的几何参数范围内,正方形和蜂窝状晶格可以同时存在较大的完整光子和声子带隙。这些大区域为技术实现提供了良好的公差,并为设计这种光子晶体结构提供了灵活性。

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