Ultrahigh Responsivity and High-Detectivity Lateral GaN Ultraviolet Nanogap Field-Emission Photodiodes

Abstract Vacuum nanoelectronic-based photodetectors operating via photoassisted field emission have the potential for significantly improved performance and robust operation under high-temperature and high-radiation environments. Here we demonstrate on-chip, GaN-based UV lateral nanogap field-emission photodiodes (NFEPs) with bandgap-dependent ultrahigh responsivity up to 2.21 × 107 A/W and corresponding detectivity of 5.0 × 1014 cm Hz1/2 W–1. The high performance is proposed to occur by a surface photovoltage effect that dramatically lowers the barrier for field emission across the nanogap upon above-bandgap illumination. These results show promise toward a new class of integrated and high-performance, bandgap-tunable, deep-UV photodetectors operable in harsh environments.

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Publication Details

Journal
Nano Letters
Published
2026-10-09
DOI
https://doi.org/10.1021/acs.nanolett.6c02852
Primary Topic
GaN-based semiconductor devices and materials
Type
article
Field-Weighted Citation Impact
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article

Ultrahigh Responsivity and High-Detectivity Lateral GaN Ultraviolet Nanogap Field-Emission Photodiodes

George T. Wang, Huu Duy Nguyen, Garrett J. Marshall, Keshab Sapkota et al.
Nano Letters
GaN-based semiconductor devices and materials
article

Ultrahigh Responsivity and High-Detectivity Lateral GaN Ultraviolet Nanogap Field-Emission Photodiodes

George T. Wang, Huu Duy Nguyen, Garrett J. Marshall, Keshab Sapkota, Liam P. Andrus, Alexey A. Belyanin, Sanghyeok Park, Maria Sebastian, Anthony Rice
article en

Abstract

Abstract Vacuum nanoelectronic-based photodetectors operating via photoassisted field emission have the potential for significantly improved performance and robust operation under high-temperature and high-radiation environments. Here we demonstrate on-chip, GaN-based UV lateral nanogap field-emission photodiodes (NFEPs) with bandgap-dependent ultrahigh responsivity up to 2.21 × 107 A/W and corresponding detectivity of 5.0 × 1014 cm Hz1/2 W–1. The high performance is proposed to occur by a surface photovoltage effect that dramatically lowers the barrier for field emission across the nanogap upon above-bandgap illumination. These results show promise toward a new class of integrated and high-performance, bandgap-tunable, deep-UV photodetectors operable in harsh environments.

Nano Letters
Sandia National Laboratories (US), Texas A&M University (US)
Openalex Percentile: Top 21%
GaN-based semiconductor devices and materials
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Ultrahigh Responsivity and High-Detectivity Lateral GaN Ultraviolet Nanogap Field-Emission Photodiodes — George T. Wang, Huu Duy Nguyen, et al. · Nano Letters (2026) | TGRS Research Map | TGRS