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Kim, Dai-Sik
Nano Optics Group
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Gaptronics: multilevel photonics applications spanning zero-nanometer limits

Author(s)
Jeong, JeeyoonKim, Hyun WooKim, Dai-Sik
Issued Date
2022-03
DOI
10.1515/nanoph-2021-0798
URI
https://scholarworks.unist.ac.kr/handle/201301/58307
Fulltext
https://www.degruyter.com/document/doi/10.1515/nanoph-2021-0798/html
Citation
NANOPHOTONICS, v.11, no.3, pp.1231 - 1260
Abstract
With recent advances in nanofabrication technology, various metallic gap structures with gap widths reaching a few to sub-nanometer, and even 'zero-nanometer', have been realized. At such regime, metallic gaps not only exhibit strong electromagnetic field confinement and enhancement, but also incorporate various quantum phenomena in a macroscopic scale, finding applications in ultrasensitive detection using nanosystems, enhancement of light-matter interactions in low-dimensional materials, and ultralow-power manipulation of electromagnetic waves, etc. Therefore, moving beyond nanometer to 'zero-nanometer' can greatly diversify applications of metallic gaps and may open the field of dynamic 'gaptronics.' In this paper, an overview is given on wafer-scale metallic gap structures down to zero-nanometer gap width limit. Theoretical description of metallic gaps from sub-10 to zero-nanometer limit, various wafer-scale fabrication methods and their applications are presented. With such versatility and broadband applicability spanning visible to terahertz and even microwaves, the field of 'gaptronics' can be a central building block for photochemistry, quantum optical devices, and 5/6G communications.
Publisher
WALTER DE GRUYTER GMBH
ISSN
2192-8606
Keyword (Author)
light-matter interactionlithographynanophotonicsreconfigurable metasurfacesub-nanometerwafer-scalezerogap
Keyword
ENHANCED RAMAN-SPECTROSCOPYTERAHERTZ QUANTUM PLASMONICSHIGH-THROUGHPUT FABRICATIONBOSE-EINSTEIN CONDENSATIONGLANCING ANGLE DEPOSITIONSINGLE-MOLECULEFIELD ENHANCEMENTVISIBLE-LIGHTCHEMICAL-REACTIONMAGNETIC-FIELD

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