Projekter pr. år
Abstract
Metasurfaces have attracted immense interest across various scientific disciplines
due to their ability to manipulate light wave parameters with numerous functionalities.
However, these functionalities have historically been static, lacking the capability for
dynamic, real-time control. In this study, we introduce a highly efficient, tunable waveplate by incorporating a thin layer of the phase change material Sb2Se3 into a silicon
all-dielectric metasurface. This structure demonstrates the ability to transition from a
half-waveplate to a quarter-waveplate as Sb2Se3 shifts from an amorphous to a
crystalline state at the telecom wavelength of 1.55 μm. Remarkably, it maintains
consistent performance across a range of rotation angles. In addition, we have
performed comprehensive electro-thermal simulations to validate the phase change
process, confirming the practical feasibility of this technology. This tunable metasurface represents a significant advancement in adaptive photonics, offering customizable and sophisticated functionalities.
Originalsprog | Engelsk |
---|---|
Artikelnummer | 031206 |
Tidsskrift | Journal of Optical Microsystems |
Vol/bind | 4 |
Udgave nummer | 3 |
Antal sider | 9 |
ISSN | 1932-5150 |
DOI | |
Status | Udgivet - 8. jun. 2024 |
Fingeraftryk
Dyk ned i forskningsemnerne om 'Hybrid all-dielectric phase-change metasurfaces for tunable waveplate'. Sammen danner de et unikt fingeraftryk.Relaterede projekter
- 1 Igangværende
-
Quantum metasurface: a novel platform for generating and manipulating single photons
Ding, F. (PI)
01/01/2021 → 31/12/2025
Projekter: Projekt › Forskning