Polarization-dependent angularly selective dielectric reflector

Abstract A key limitation of conventional polarizers is their lack of intrinsic angular selectivity. Thus, optical devices that manipulate polarization and propagation direction are forced to realize these two degrees of freedom sequentially, increasing size and complexity. Here, we introduce and experimentally demonstrate a compact, all-dielectric optical element that simultaneously achieves polarization separation and angular selectivity. This is accomplished using a truncated three-dimensional photonic crystal that possesses a mirror symmetry and exhibits an associated symmetry band gap. For incident light aligned with the high-symmetry direction, the symmetry band gap enforces polarization-dependent reflection and transmission, whereas deviations from this orientation lift the symmetry constraint and erase the polarization selectivity. Implemented using alternating layers of silicon-rich and silicon-poor nitride etched into a cubic lattice of prisms, the structure exhibits tailorable bandwidth and low optical loss while maintaining stable performance over a wide field of view and preserving compatibility with standard nanofabrication techniques.

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Publication Details

Journal
Nature Communications
Published
2026-09-15
DOI
https://doi.org/10.1038/s41467-026-77529-6
Primary Topic
Photonic Crystals and Applications
Type
article
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article

Polarization-dependent angularly selective dielectric reflector

Chloe F. Doiron, Hyosim Yang, Tomás Santiago‐Cruz, Jiho Noh et al.
Nature Communications
Photonic Crystals and Applications
article

Polarization-dependent angularly selective dielectric reflector

Chloe F. Doiron, Hyosim Yang, Tomás Santiago‐Cruz, Jiho Noh, Alexander Cerjan, Ki Young Lee, Sanghyeok Park, Kate Musick, Jaeyeon Yu
article en

Abstract

Abstract A key limitation of conventional polarizers is their lack of intrinsic angular selectivity. Thus, optical devices that manipulate polarization and propagation direction are forced to realize these two degrees of freedom sequentially, increasing size and complexity. Here, we introduce and experimentally demonstrate a compact, all-dielectric optical element that simultaneously achieves polarization separation and angular selectivity. This is accomplished using a truncated three-dimensional photonic crystal that possesses a mirror symmetry and exhibits an associated symmetry band gap. For incident light aligned with the high-symmetry direction, the symmetry band gap enforces polarization-dependent reflection and transmission, whereas deviations from this orientation lift the symmetry constraint and erase the polarization selectivity. Implemented using alternating layers of silicon-rich and silicon-poor nitride etched into a cubic lattice of prisms, the structure exhibits tailorable bandwidth and low optical loss while maintaining stable performance over a wide field of view and preserving compatibility with standard nanofabrication techniques.

Nature Communications
Sandia National Laboratories (US), Center for Integrated Nanotechnologies (US)
Openalex Percentile: Top 13%
Photonic Crystals and Applications
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Polarization-dependent angularly selective dielectric reflector — Chloe F. Doiron, Hyosim Yang, et al. · Nature Communications (2026) | TGRS Research Map | TGRS