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Tunable photonic crystals enable new optical physics and devices

机译:可调谐光子晶体使新光学物理和设备实现

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We show that tunable photonic band gap materials offer new opportunities for device applications. Optical switches or sensors that are far more compact and sensitive, for instance, can be constructed when we introduce either optical or mechanical tunability into photonic crystal structures. Furthermore, when we tune the photonic crystal while a photon is inside the crystal, the crystal can exhibit qualitatively different optical physics effects. As a particularly exciting example, we show that light can in fact be completely stopped in a tunable photonic crystal, and the conventional delay bandwidth product limit in resonator optics can be completely overcome.
机译:我们表明可调谐的光子频带隙材料为设备应用提供了新的机会。例如,当我们将光学或机械可调性引入光子晶体结构时,可以构建光学开关或更敏感的传感器。此外,当我们在光子在晶体内时调谐光子晶体时,晶体可以表现出定性不同的光学物理效果。作为特别激动的示例,我们表明光可以在可调谐光子晶体中完全停止,并且可以完全克服谐振器光学器件中的传统延迟带宽产品限制。

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