Enhancement of Circular Dichroism in Chiral Dielectric Metasurfaces by Ion Beam Irradiation

Fuente: arXiv
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Autori principali: Fitriana, Anna, Tanaka, Katsuya, Jaeger, Lukas Raam, Hafermann, Martin, Pertsch, Thomas, Ronning, Carsten, Staude, Isabelle
Natura: Preprint
Pubblicazione: 2026
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author Fitriana, Anna
Tanaka, Katsuya
Jaeger, Lukas Raam
Hafermann, Martin
Pertsch, Thomas
Ronning, Carsten
Staude, Isabelle
author_facet Fitriana, Anna
Tanaka, Katsuya
Jaeger, Lukas Raam
Hafermann, Martin
Pertsch, Thomas
Ronning, Carsten
Staude, Isabelle
contents Resonant chiral dielectric metasurfaces can support circular dichroism exceeding that of natural materials, but their small dissipative losses simultaneously limit the maximization of circular dichroism, which inherently relies on absorption. Importantly, while the condition for optimal circular dichroism in resonant structures can be rigorously formulated based on the concept of critical coupling, controlling the amount of absorption experimentally, and ideally tuning it to the optimal value post-fabrication, remains elusive. Here, we experimentally tailor the dissipative losses of chiral bilayer dielectric metasurfaces post-fabrication using energetic ion beam irradiation. Specifically, we study the transmission characteristics of C4-symmetric chiral metasurface consisting of silicon nanocuboid arrays embedded in silica glass using polarization-resolved spectroscopy. We enhance the circular dichroism from 0.70 in the pristine, unirradiated metasurface to 0.85 after irradiation. Our experimental results are complemented by numerical simulations allowing us to retrieve the refractive index changes induced by the ion beam irradiation in the constituent materials of the metasurface. Our work offers a new approach to globally maximize optical chirality in engineered nanostructures, paving the way towards chiral emission and advanced polarization control applications
format Preprint
id arxiv_https___arxiv_org_abs_2603_06154
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Enhancement of Circular Dichroism in Chiral Dielectric Metasurfaces by Ion Beam Irradiation
Fitriana, Anna
Tanaka, Katsuya
Jaeger, Lukas Raam
Hafermann, Martin
Pertsch, Thomas
Ronning, Carsten
Staude, Isabelle
Optics
Resonant chiral dielectric metasurfaces can support circular dichroism exceeding that of natural materials, but their small dissipative losses simultaneously limit the maximization of circular dichroism, which inherently relies on absorption. Importantly, while the condition for optimal circular dichroism in resonant structures can be rigorously formulated based on the concept of critical coupling, controlling the amount of absorption experimentally, and ideally tuning it to the optimal value post-fabrication, remains elusive. Here, we experimentally tailor the dissipative losses of chiral bilayer dielectric metasurfaces post-fabrication using energetic ion beam irradiation. Specifically, we study the transmission characteristics of C4-symmetric chiral metasurface consisting of silicon nanocuboid arrays embedded in silica glass using polarization-resolved spectroscopy. We enhance the circular dichroism from 0.70 in the pristine, unirradiated metasurface to 0.85 after irradiation. Our experimental results are complemented by numerical simulations allowing us to retrieve the refractive index changes induced by the ion beam irradiation in the constituent materials of the metasurface. Our work offers a new approach to globally maximize optical chirality in engineered nanostructures, paving the way towards chiral emission and advanced polarization control applications
title Enhancement of Circular Dichroism in Chiral Dielectric Metasurfaces by Ion Beam Irradiation
topic Optics
url https://arxiv.org/abs/2603.06154