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Grating-based guided-mode resonance devices and degradation of their performance in real-life conditions

机译:基于光栅的导模谐振装置及其在实际条件下的性能下降

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Guided-mode resonances in structures having periodicity along at least one dimension were widely employed in the last decade in various optical devices. Initially it was shown that at frequencies close to the second order band gap periodic structures can feature total reflection of light due to the guided modes propagating along the surface of the grating. As an application, this allows to substitute a thick multilayer Bragg mirror in VCSELs by a thin grating-based mirror. Most devices utilizing guided-mode resonances were theoretically and numerically investigated with the idealized model of an infinite periodic structure illuminated by a plane wave. To see how grating-based components can perform in real life we take into account two critical factors: the finite size of the grating and the Gaussian shape of the light source replacing a plane wave. These factors can significantly change and impair the performance of filters, mirrors, sensors and other devices operating by the guided-mode resonance effect. We also show experimentally that for some kinds of gratings guided-mode resonances can vanish if the grating is illuminated by extended source, i.e. heated plate in our case, focused on the sample.
机译:在过去的十年中,在各种光学装置中广泛采用了具有沿至少一个维度具有周期性的结构中的引导模式共振。最初表明,在接近二阶带隙的频率处,周期性结构的特征在于光的全反射,这是由于沿光栅表面传播的导模所致。作为应用,这允许用基于光栅的薄镜代替VCSEL中的厚多层布拉格镜。在理论上和数值上,利用平面波照射的无限周期结构的理想模型对大多数利用导模共振的设备进行了理论和数值研究。为了了解基于光栅的组件如何在现实生活中发挥作用,我们考虑了两个关键因素:光栅的有限大小和光源替代平面波的高斯形状。这些因素会显着改变并削弱滤光片,反射镜,传感器和其他通过导模共振效应运行的设备的性能。我们还通过实验表明,对于某些类型的光栅,如果光栅被扩展光源照亮,则导模共振会消失,例如,在我们的案例中,加热板聚焦在样品上。

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