Can a vector beam be critically coupled leading to perfect absorption?

Fuente: arXiv
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Hauptverfasser: Roy, Sauvik, Ghosh, Nirmalya, Banerjee, Ayan, Gupta, Subhasish Dutta
Format: Preprint
Veröffentlicht: 2025
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author Roy, Sauvik
Ghosh, Nirmalya
Banerjee, Ayan
Gupta, Subhasish Dutta
author_facet Roy, Sauvik
Ghosh, Nirmalya
Banerjee, Ayan
Gupta, Subhasish Dutta
contents Critical coupling has emerged as a prominent area of research in recent years. However, most theoretical models are based on scalar theories (and occasionally coupled mode theories), which inadequately account for the polarization states of the incident light. To bridge this gap, we revisit the concept of critical coupling in planar multilayer structures using a full vectorial theory, where conventional plane wave illumination is replaced by well-defined vector beams with and without orbital angular momentum (OAM). Our investigation explores the possibility of complete absorption of monochromatic beams without and with intrinsic OAM (such as Gaussian and Laguerre-Gaussian (LG)), incident on the multilayer structure at normal or oblique incidence. A two-component metal-dielectric composite film is chosen as the absorbing layer in the system. Our results demonstrate a significant reduction in the intensities of the reflected and transmitted beams at normal incidence, with reduced efficiency for oblique incidence due to the lack of spatial overlap of multiply reflected components. Interestingly, we also observe super-scattering from the same structures when conditions for constructive interference of the various reflected components are satisfied. This work highlights the need to incorporate the vector nature of beams by retaining the complete polarization information of off-axis spatial harmonics in future studies.
format Preprint
id arxiv_https___arxiv_org_abs_2510_06822
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Can a vector beam be critically coupled leading to perfect absorption?
Roy, Sauvik
Ghosh, Nirmalya
Banerjee, Ayan
Gupta, Subhasish Dutta
Optics
Critical coupling has emerged as a prominent area of research in recent years. However, most theoretical models are based on scalar theories (and occasionally coupled mode theories), which inadequately account for the polarization states of the incident light. To bridge this gap, we revisit the concept of critical coupling in planar multilayer structures using a full vectorial theory, where conventional plane wave illumination is replaced by well-defined vector beams with and without orbital angular momentum (OAM). Our investigation explores the possibility of complete absorption of monochromatic beams without and with intrinsic OAM (such as Gaussian and Laguerre-Gaussian (LG)), incident on the multilayer structure at normal or oblique incidence. A two-component metal-dielectric composite film is chosen as the absorbing layer in the system. Our results demonstrate a significant reduction in the intensities of the reflected and transmitted beams at normal incidence, with reduced efficiency for oblique incidence due to the lack of spatial overlap of multiply reflected components. Interestingly, we also observe super-scattering from the same structures when conditions for constructive interference of the various reflected components are satisfied. This work highlights the need to incorporate the vector nature of beams by retaining the complete polarization information of off-axis spatial harmonics in future studies.
title Can a vector beam be critically coupled leading to perfect absorption?
topic Optics
url https://arxiv.org/abs/2510.06822