hBN‐Encapsulated Graphene Coupled to a Plasmonic Metasurface via 1D Electrodes for Photodetection Applications

Author:

Frydendahl Christian1ORCID,Indukuri Sita Rama Krishna Chaitanya1,Devidas Taget Raghavendran2,Han Zhengli1,Mazurski Noa1,Watanabe Kenji3,Taniguchi Takashi3,Steinberg Hadar2,Levy Uriel1

Affiliation:

1. Department of Applied Physics The Hebrew University of Jerusalem Jerusalem 91904 Israel

2. The Racah Institute of Physics The Hebrew University of Jerusalem Jerusalem 91904 Israel

3. Advanced Materials Laboratory National Institute for Materials Science Tsukuba 305‐0044 Japan

Abstract

It is shown here how encapsulated graphene devices can be laterally coupled to plasmonic metasurfaces via 1D edge contacts, preserving the high mobility of encapsulated graphene while enhancing optical coupling. The device is used for photodetection applications where high responsivities in the range of 100 A W−1 for most of the visible spectrum are reported. The device exhibits a photogating effect which is attributed to defect states in the encapsulating hBN layers. The results highlight a new configuration to couple graphene with plasmonic structures and points to a new type of device based on defect states and graphene's excellent transport properties to achieve photodetectors with ultrahigh responsivities.

Funder

Carlsbergfondet

Publisher

Wiley

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