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Article detail · 2021 · conference-paper

Enhancement of Magnetic Dipole Spontaneous Emission with Silicon Hollow Nanocuboid Resonator in Visible Range

Journal 2021 3rd International Congress on Human-Computer Interaction, Optimization and Robotic Applications (HORA)
OpenAlex
Year2021
Citations0OpenAlex
Percentile%10.1
FWCI0.01.00 = world average

Data source split

  • YÖKSİS venue2021 3rd International Congress on Human-Computer Interaction, Optimization and Robotic Applications (HORA)
  • OpenAlexOpenAlex enrichment (abstract, citations, topics)
  • Semantic Scholarcitation count (not merged with OpenAlex)

Abstract

OpenAlex English

The downscaling of optical devices into nanometer scale has the potential to enable exciting technologies such as all-optical computing and ultra-fast optical communications. With the advancements in nanofabrication techniques, confinement and manipulation of light below the diffraction limit have been achieved. However, the realization of ultra-fast and efficient nano light-sources is still a challenge. Utilizing Purcell effect with all-dielectric nanophotonics can be a promising solution to address the limitations. In this context, we offer an all-dielectric silicon hollow nanocuboid structure that can be employed to obtain enhanced magnetic dipole emission. According to the simulation results, silicon hollow nanocuboid provides a strong magnetic resonance and enhances magnetic dipole emission of a source in visible range. In this design, the hollow in the middle of structure supports accessible magnetic hotspots which can interact with magnetic dipole sources to force them emit with a higher decay rate. According to the results, the hollow nanocuboid design has a higher potential to increase the magnetic dipole decay rate enhancement in comparison to the previously reported structures and it can be used as a nano light-source in photonic integrated circuits, all-optical processors, and wideband optical communication networks.

Topics

Citations

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0citationsOpenAlex · cited_by_count (cache / database)

Authors

1
  1. EKİN ASLAN KAYSERİ ÜNİVERSİTESİ 1