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Application of the Hilbert Transform Method for the Retrieval of the Phase Characteristics of Plasmonic Metal Bragg Gratings

机译:希尔伯特变换方法在等离子金属布拉格光栅相位特性反演中的应用

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摘要

We demonstrate, with detailed examples, a method to retrieve the phase and group-delay responses of plasmonic metal Bragg gratings (MBGs) from their reflection and transmission spectra. The method is based on the Hilbert transform (HT) that relates the phase and the amplitude spectrum of a minimum-phase system. For the retrieval of the reflection phase, if the propagation loss of the grating is negligible, the method cannot tolerate any asymmetry in the grating profile and thus fails to operate for practical low-loss fiber or dielectric-waveguide Bragg gratings, where the fabrication errors are sufficient to destroy the symmetry requirement. The large propagation loss of the surface plasmon mode, however, makes possible the retrieval of the reflection phase of an MBG that contains a certain degree of asymmetry in the grating profile. For the retrieval of the transmission phase, the symmetry requirement is not an issue, while a large propagation loss can introduce significant errors in the retrieved phase spectrum. It is possible, however, to largely reduce such errors by applying the HT method to the spectrum with the background propagation loss artificially removed. The HT method provides a simple and effective way to obtain the phase and group-delay characteristics of MBGs, which are difficult to measure directly, and can find applications in the development of grating-based plasmonic devices.
机译:我们通过详细的示例演示了一种从等离子金属布拉格光栅(MBG)的反射和透射光谱中检索相位和群延迟响应的方法。该方法基于希尔伯特变换(HT),该变换将最小相位系统的相位和幅度谱相关联。对于反射相位的恢复,如果光栅的传播损耗可忽略不计,则该方法不能容忍光栅轮廓中的任何不对称性,因此无法在实际的低损耗光纤光栅或介质波导布拉格光栅上工作,因为制造误差足以破坏对称性要求。然而,表面等离子体激元模式的大传播损耗使得可以恢复在光栅轮廓中包含一定程度的不对称性的MBG的反射相位。对于传输相位的检索,对称性要求不是问题,而较大的传播损耗会在所检索的相位谱中引入明显的误差。但是,可以通过将HT方法应用于频谱,并人工去除背景传播损耗,从而大大降低此类误差。 HT方法为获得难以直接测量的MBG的相位和群延迟特性提供了一种简单有效的方法,可以在基于光栅的等离激元器件的开发中找到应用。

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