arXiv Open Access 2024

Environmental permittivity-asymmetric BIC metasurfaces with electrical reconfigurability

Haiyang Hu Wenzheng Lu Rodrigo Berte Stefan A Maier Andreas Tittl
Lihat Sumber

Abstrak

In the rapidly evolving field of nanophotonics, achieving precise spectral and temporal light manipulation at the nanoscale remains a critical challenge. While photonic bound states in the continuum (BICs) have emerged as a powerful means of controlling light, their common reliance on geometrical symmetry breaking for obtaining tailored resonances makes them highly susceptible to fabrication imperfections and fundamentally limits their maximum resonance quality factor. Here, we introduce the concept of environmental symmetry breaking by embedding identical resonators into a surrounding medium with carefully placed regions of contrasting refractive indexes, activating permittivity-driven quasi-BIC resonances without any alterations of the underlying resonator geometry and unlocking an additional degree of freedom for light manipulation through actively tuning the surrounding refractive index contrast. We demonstrate this concept by integrating polyaniline (PANI), an electro-optically active polymer, to achieve electrically reconfigurable qBICs. This integration not only demonstrates rapid switching speeds, and exceptional durability but also significantly boosts the system's optical response to environmental perturbations. Our strategy significantly expands the capabilities of resonant light manipulation through permittivity modulation, opening avenues for on-chip optical devices, advanced sensing, and beyond.

Penulis (5)

H

Haiyang Hu

W

Wenzheng Lu

R

Rodrigo Berte

S

Stefan A Maier

A

Andreas Tittl

Format Sitasi

Hu, H., Lu, W., Berte, R., Maier, S.A., Tittl, A. (2024). Environmental permittivity-asymmetric BIC metasurfaces with electrical reconfigurability. https://arxiv.org/abs/2404.15462

Akses Cepat

Lihat di Sumber
Informasi Jurnal
Tahun Terbit
2024
Bahasa
en
Sumber Database
arXiv
Akses
Open Access ✓