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Double Electromagnetically Induced Transparency and Its Slow Light Application Based on a Guided-Mode Resonance Grating Cascade Structure

机译:基于引导式共振光栅级联结构的双电磁诱导透明度及其慢光应用

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摘要

In recent years, the achievement of the electromagnetically induced transparency (EIT) effect based on the guided-mode resonance (GMR) effect has attracted extensive attention. However, few works have achieved a double EIT-like effect using this method. In this paper, we numerically achieve a double EIT-like effect in a GMR system with a three-layer silicon nitride waveguide grating structure (WGS), using the multi-level atomic system model for theoretical explanation. In terms of slow light performance, the corresponding two delay times reach 22.59 ps and 8.43 ps, respectively. We also investigate the influence of wavelength detuning of different GMR modes on the transparent window and slow light performance. Furthermore, a wide-band flat-top transparent window was also achieved by appropriately adjusting the wavelength detuning between GMR modes. These results indicate that the EIT-like effect in the WGS has potential application prospects in low-loss slow optical devices, optical sensing, and optical communications.
机译:近年来,基于引导模式共振(GMR)效应的电磁诱导透明度(EIT)效应的实现引起了广泛的关注。然而,利用这种方法,很少有效地实现了类似的类似效果。在本文中,我们使用多级原子系统模型进行了三层氮化硅波导光栅结构(WGS),在数值上实现了双重EIT系统。就较慢的光性性能而言,相应的两个延迟时间分别达到22.59 ps和8.43 ps。我们还研究了不同GMR模式对透明窗口的影响和慢光性性能的影响。此外,还通过适当地调节GMR模式之间的波长静脉静脉静脉静脉静脉的宽带平顶透明窗口。这些结果表明,WG的EIT样效果具有低损耗慢光学装置,光学感测和光通信的潜在应用前景。

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