Experimental realization of deep sub-wavelength confinement of light in a topology-optimized InP nanocavity

Author:

Xiong Meng1ORCID,Christiansen Rasmus Ellebæk12ORCID,Schröder Frederik1,Yu Yi1ORCID,Casses Laura Nevenka1,Semenova Elizaveta1,Yvind Kresten1ORCID,Stenger Nicolas1ORCID,Sigmund Ole12,Mørk Jesper1

Affiliation:

1. NanoPhoton - Center for Nanophotonics

2. Technical University of Denmark

Abstract

We experimentally demonstrate an InP nanocavity with a mode volume of 0.26 (λ/2n)3. This is an order of magnitude smaller than the mode volumes previously demonstrated in photonic crystal point-defect cavities realized in III-V materials and four times smaller than what is often referred to as the diffraction-limited volume, Vλ= (λ/2n)3. The nanocavity is designed using topology optimization, taking into account fabrication limitations, which are pushed compared to the state-of-the-art. This work thus introduces a new class of cavities featuring extreme dielectric confinement (EDC) into the realm of III-V semiconductors, offering order-of-magnitude Purcell-enhancement of the radiative rate. EDC nanocavities may thus be employed to significantly improve the properties of nanolasers, nanoLEDs and single-photon sources, among other applications.

Funder

Danmarks Grundforskningsfond

European Research Council

Publisher

Optica Publishing Group

Subject

Electronic, Optical and Magnetic Materials

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