English

Metal-Dielectric-Enhanced Upconversion: Going "Meso"

Optics 2022-07-12 v2

Abstract

A novel concept of a \textit{mesocavity}, based on a simple yet counter-intuitive idea of covering metal nanoparticles with unusually thick (100\gtrsim 100 nm) high-index dielectric shells, is demonstrated in technologically relevant and largely sought-after case of an upconversion (UC) enhancement. For readily available combinations of materials and geometrical parameters of metal-dielectric core-shell mesocavity, record high values of UC enhancement of 106\gtrsim 10^6 can be achieved on the cavity surface. For emitter inside the high-index dielectric shell with refractive index n=2.7n=2.7, the Lorentz local-field correction can provide an additional enhancement factor for UC of 92\approx 92, resulting in UC enhancement of 108\gtrsim 10^8, which is three orders of magnitude larger than it has ever been reported for individual particles. Our mesocavity concept facilitates a beneficial synergy of plasmonic and whispering gallery-mode resonance functionalities within an intermediary region between nanoscale (100\lesssim 100 nm) and microscale (1\gtrsim 1 μ\mum).

Keywords

Cite

@article{arxiv.2207.01132,
  title  = {Metal-Dielectric-Enhanced Upconversion: Going "Meso"},
  author = {Ilia L. Rasskazov and Alexander Moroz and Catherine J. Murphy and Todd D. Krauss and P. Scott Carney},
  journal= {arXiv preprint arXiv:2207.01132},
  year   = {2022}
}
R2 v1 2026-06-24T12:12:38.337Z