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최민호

Choi, Minho
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Nonlocal, Flat-Band Meta-Optics for Monolithic, High-Efficiency, Compact Photodetectors

Author(s)
Choi, MinhoMunley, ChristopherFroch, Johannes E.Chen, RuiMajumdar, Arka
Issued Date
2024-03
DOI
10.1021/acs.nanolett.3c05139
URI
https://scholarworks.unist.ac.kr/handle/201301/88796
Citation
NANO LETTERS, v.24, no.10, pp.3150 - 3156
Abstract
Miniaturized photodetectors are becoming increasingly sought-after components for next-generation technologies, such as autonomous vehicles, integrated wearable devices, or gadgets embedded on the Internet of Things. A major challenge, however, lies in shrinking the device footprint while maintaining high efficiency. This conundrum can be solved by realizing a nontrivial relation between the energy and momentum of photons, such as dispersion-free devices, known as flat bands. Here, we leverage flat-band meta-optics to simultaneously achieve critical absorption over a wide range of incidence angles. For a monolithic silicon meta-optical photodiode, we achieved an similar to 10-fold enhancement in the photon-to-electron conversion efficiency. Such enhancement over a large angular range of similar to 36 degrees allows incoming light to be collected via a large-aperture lens and focused on a compact photodiode, potentially enabling high-speed and low-light operation. Our research unveils new possibilities for creating compact and efficient optoelectronic devices with far-reaching impact on various applications, including augmented reality and light detection and ranging.
Publisher
AMER CHEMICAL SOC
ISSN
1530-6984
Keyword (Author)
guided mode resonancemeta-opticsphotodetectorflat bandnonlocal

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