Photonic crystal backbone for light trapping inside an ultrathin, low absorbing layer

Author:

El-Jallal Said12,Hochedel Marion1,Capitolis Jerôme1,Nguyen Hai-Son13,Chevalier Céline1,Leclercq Jean-Louis1,Amara Mohamed1,Seassal Christian1,Drouard Emmanuel1ORCID

Affiliation:

1. Univ. Lyon, CNRS, Ecole Centrale de Lyon, INSA Lyon, Université Claude Bernard Lyon 1, CPE Lyon, INL

2. Univ. Cadi Ayyad, Ecole Normale Supérieure

3. Institut Universitaire de France

Abstract

A few tens of nanometre thick ultrathin materials may suffer from a very low absorption at their band edges. In this work, we investigate a photonic crystal (PC) made of a lowcost, transparent patterned silicon nitride (SiNx) layer, conformally covered with an ultrathin active layer (e.g., 20 nm TiO2) in view of its use in various applications such as photocatalysis. A fair estimation of the absorption enhancement, considering the volume of the active material, is calculated using RCWA. A remarkable enhancement (more than ten-folds) in absorptance in the near UV range and a very high transmittance over the visible range are observed. A detailed modal analysis of the structures-of-interest unravels the Light Trapping (LT) mechanisms and allows the derivation of key design guidelines. Optical measurements on a patterned sample provide a first proof-of-concept of such possible photonic backbone structures suitable for highly efficient depollution and artificial photosynthesis for solar fuels production.

Funder

Agence Nationale de la Recherche

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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