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Double-inverse-opal photonic crystals: The route to photonic bandgap switching

机译:双反蛋白石光子晶体:光子带隙转换的途径

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Photonic crystals with a complete bandgap can stop the propagation of light of a certain frequency in all directions. We introduce double-inverse-opal photonic crystals (DIOPCs) as a new kind of optical switch. In the DIOPC, a movable, weakly scattering sphere is embedded within each pore of the inverse-opal photonic crystal lattice. Switching between a diffusive reflector and a photonic crystal environment is experimentally demonstrated. Theory shows that a complete bandgap can be realized that can be opened or closed by moving the spheres. This functionality opens up new possibilities for the control of light emission and propagation. The close link and interaction between the chemical synthesis and the computational design and analysis underlines the interdisciplinary focus of this report.
机译:具有完整带隙的光子晶体可以阻止一定频率的光在所有方向上的传播。我们引入双反蛋白石光子晶体(DIOPC)作为一种新型的光开关。在DIOPC中,可移动的弱散射球嵌入反蛋白石光子晶体晶格的每个孔中。实验证明了在漫反射器和光子晶体环境之间的切换。理论表明,可以通过移动球体来实现打开或关闭的完整带隙。此功能为控制光的发射和传播开辟了新的可能性。化学合成与计算设计和分析之间的紧密联系和相互作用强调了本报告的跨学科重点。

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