Deeply subwavelength integrated excitonic van der Waals nanophotonics

Author:

Ling HaonanORCID,Manna Arnab1,Shen Jialiang2,Tung Ho-Ting,Sharp David2ORCID,Fröch Johannes1,Dai Siyuan2,Majumdar Arka1ORCID,Davoyan Artur R.ORCID

Affiliation:

1. University of Washington

2. Auburn University

Abstract

The wave nature of light sets a fundamental diffraction limit that challenges confinement and control of light in nanoscale structures with dimensions significantly smaller than the wavelength. Here, we study light–matter interaction in van der Waals MoS2 nanophotonic devices. We show that light can be coupled and guided in structures with dimensions as small as ≃λ/16 (∼60nm at 1000 nm excitation wavelength), while offering unprecedented optical field confinement. This deep subwavelength optical field confinement is achieved by exploiting strong lightwave dispersion in MoS2. We further study the performance of a range of nanophotonic integrated devices via far- and near-field measurements. Our near-field measurements reveal detailed imaging of excitation, evolution, and guidance of fields in nanostructured MoS2, whereas our far-field study examines light excitation and coupling to highly confined integrated photonics. Nanophotonics at a fraction of a wavelength demonstrated here could dramatically reduce the size of integrated photonic devices and opto-electronic circuits with potential applications in optical information science and engineering.

Funder

ACS PRF

National Science Foundation

Breakthrough Prize Foundation

Hellman Foundation

National Aeronautics and Space Administration

UCLA Society of Hellman Fellows

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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