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Frenkel-Poole mechanism unveils black diamond as quasi-epsilon-near-zero surface

Authors :
Andrea Orsini
Daniele Barettin
Sara Pettinato
Stefano Salvatori
Riccardo Polini
Maria Cristina Rossi
Alessandro Bellucci
Eleonora Bolli
Marco Girolami
Matteo Mastellone
Stefano Orlando
Valerio Serpente
Veronica Valentini
Daniele Maria Trucchi
Source :
Nanomaterials; Volume 13; Issue 2; Pages: 240
Publication Year :
2023
Publisher :
MDPI, 2023.

Abstract

A recent innovation in diamond technology has been the development of the “black diamond” (BD), a material with very high optical absorption generated by processing the diamond surface with a femtosecond laser. In this work, we investigate the optical behavior of the BD samples to prove a near to zero dielectric permittivity in the high electric field condition, where the Frenkel-Poole (FP) effect takes place. Zero-epsilon materials (ENZ), which represent a singularity in optical materials, are expected to lead to remarkable developments in the fields of integrated photonic devices and optical interconnections. Such a result opens the route to the development of BD-based, novel, functional photonic devices.

Details

Language :
English
Database :
OpenAIRE
Journal :
Nanomaterials; Volume 13; Issue 2; Pages: 240
Accession number :
edsair.doi.dedup.....271c1c7c608c0b5465c5762baec6e7c8