Sb2S3 as a low-loss phase-change material for mid-IR photonics

Author:

Biegański Adam1,Perestjuk Marko1,Armand Rémi,Della Torre AlbertoORCID,Laprais Capucine,Saint-Girons Guillaume,Reboud Vincent2,Hartmann Jean-Michel2,Tortai Jean-Hervé3,Moreau Antonin4,Lumeau Julien4ORCID,Nguyen Thach1ORCID,Mitchell Arnan1ORCID,Monat Christelle,Cueff SébastienORCID,Grillet Christian

Affiliation:

1. RMIT University

2. Université Grenoble Alpes

3. Institute of Engineering and Management University Grenoble Alpes

4. Aix Marseille Univ, CNRS, Centrale Marseille, Institut Fresnel

Abstract

We study the mid-IR optical properties of Sb2S3 – a phase-change material (PCM) with high potential for mid-IR integrated photonics. We show that Sb2S3 exhibits a high refractive index contrast Δn ≈ 1 between its two phases and an extinction coefficient k below 10−2 at mid-IR wavelengths (up to ∼10 µm). We study the impact of 100 nm Sb2S3 cladding on SiGe-on-Si waveguides and experimentally show that it brings additional propagation loss below 1 dB/cm in the 3.3–3.9 µm wavelength range in both phases. These findings pave the way for new uses of Sb2S3 in mid-IR integrated photonics.

Funder

H2020 Marie Skłodowska-Curie Actions

Agence Nationale de la Recherche

Publisher

Optica Publishing Group

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