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[Springer Series in Optical Sciences] Fano Resonances in Optics and Microwaves Volume 219 (Physics and Applications) || Mueller Matrix Approach for Engineering Asymmetric Fano-resonance Line Shape in Anisotropic Optical System

DOI:10.1007/978-3-319-99731-5_3 出版年份:2018 更新时间:2025-09-09 09:28:46
摘要: The Fano resonances observed in diverse micro and nano optical systems have received particular attention due to their numerous potential applications like sensing, switching, lasing, ?lters and robust color display, nonlinear and slow-light devices, invisibility cloaking, and so forth. For most of these applications, it is highly desirable that the asymmetric spectral line shape of Fano resonance can be controlled or modulated by some experimentally accessible parameters. In this chapter, we discuss a new concept based on polarization Mueller matrix analysis for tuning the Fano interference effect and the resulting asymmetric spectral line shape in anisotropic optical system. The approach is founded on a generalized model of anisotropic Fano resonance and exploits the differential polarization response (anisotropy) of the two interfering modes to achieve unprecedented control over Fano resonance. Illustrative results on the use of the model for tuning Fano resonance in coupled plasmonic systems are presented. In this context, the fundamentals of polarized light, the mathematical framework of Stokes-Mueller formalism and the basic polarimetry parameters encoded in Mueller matrix are discussed. The speci?cs of a novel dark ?eld Mueller matrix spectroscopy system and its use for studying the polarization response of Fano resonance in plasmonic systems is illustrated with selected examples. The chapter concludes with an outlook on the prospects of the polarization-optimized anisotropic Fano resonant systems for applications involving control and manipulation of electromagnetic waves at the nano scale.
作者: A. K. Singh,S. Chandel,S. K. Ray,P. Mitra,N. Ghosh
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Investigating the control and modulation of the asymmetric spectral line shape of Fano resonance in anisotropic optical systems using polarization Mueller matrix analysis.

The chapter presents a novel approach for controlling and modulating the asymmetric spectral line shape of Fano resonance in anisotropic optical systems using polarization Mueller matrix analysis. The method enables unprecedented control over Fano resonance by exploiting the differential polarization response of the interfering modes. The study demonstrates the potential of polarization-optimized anisotropic Fano resonant systems for applications in nano-scale control and manipulation of electromagnetic waves.

The study is limited to anisotropic optical systems and plasmonic nanostructures. The experimental setup requires precise alignment and calibration of the polarimetric platform. The approach may not be directly applicable to highly depolarizing systems without additional filtering of the depolarizing component.

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