Synchronously wired infrared antennas for resonant single-quantum-well photodetection up to room temperature

Author:

Miyazaki Hideki T.ORCID,Mano TakaakiORCID,Kasaya Takeshi,Osato HirotakaORCID,Watanabe Kazuhiro,Sugimoto Yoshimasa,Kawazu Takuya,Arai Yukinaga,Shigetou Akitsu,Ochiai Tetsuyuki,Jimba Yoji,Miyazaki Hiroshi

Abstract

AbstractOptical patch antennas sandwiching dielectrics between metal layers have been used as deep subwavelength building blocks of metasurfaces for perfect absorbers and thermal emitters. However, for applications of these metasurfaces for optoelectronic devices, wiring to each electrically isolated antenna is indispensable for biasing and current flow. Here we show that geometrically engineered metallic wires interconnecting the antennas can function to synchronize the optical phases for promoting coherent resonance, not only as electrical conductors. Antennas connected with optimally folded wires are applied to intersubband infrared photodetectors with a single 4-nm-thick quantum well, and a polarization-independent external quantum efficiency as high as 61% (responsivity 3.3 A W−1, peak wavelength 6.7 μm) at 78 K, even extending to room temperature, is demonstrated. Applications of synchronously wired antennas are not limited to photodetectors, but are expected to serve as a fundamental architecture of arrayed subwavelength resonators for optoelectronic devices such as emitters and modulators.

Funder

MEXT | Japan Society for the Promotion of Science

Iketani Science and Technology Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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