Optical super-resonances in dielectric microsphere particles: Proc. SPIE 12152
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Extreme field localization and giant field enhancement are often achieved by using plasmonic nanostructures and metamaterials such as strongly coupled silver nanoparticles. Dielectric particles and structures can focus light beyond the
diffraction limit (photonic nanojet effect), but with much weaker strengths. Recently, we showed that dielectric microspheres could support high-order Mie resonance modes (‘super-resonance modes’), that can generate similar level
of electric field intensity enhancement as plasmonic structures on the order of 10^4 - 10^7. In this work, we aim to further advance our understanding of the super-resonance modes. New results on the effects of size parameter and refractive index on optical super-resonances across a wide parameter range and with improved numerical accuracies is presented. The results suggest that the electric field intensity enhancement could reach a record high level of 10^9 -10^11 at specific conditions that surpass plasmonic enhancements. Moreover, super-resonance-enabled focusing by microsphere lens under different lighting sources (e.g., different colour LEDs or lasers, halogen lamps) is investigated and
compared for the first time. These results are important in understanding the super-resolution mechanism for microsphere nanoscopy and will find numerous potential applications in photonics.
diffraction limit (photonic nanojet effect), but with much weaker strengths. Recently, we showed that dielectric microspheres could support high-order Mie resonance modes (‘super-resonance modes’), that can generate similar level
of electric field intensity enhancement as plasmonic structures on the order of 10^4 - 10^7. In this work, we aim to further advance our understanding of the super-resonance modes. New results on the effects of size parameter and refractive index on optical super-resonances across a wide parameter range and with improved numerical accuracies is presented. The results suggest that the electric field intensity enhancement could reach a record high level of 10^9 -10^11 at specific conditions that surpass plasmonic enhancements. Moreover, super-resonance-enabled focusing by microsphere lens under different lighting sources (e.g., different colour LEDs or lasers, halogen lamps) is investigated and
compared for the first time. These results are important in understanding the super-resolution mechanism for microsphere nanoscopy and will find numerous potential applications in photonics.
Original language | English |
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Pages | 1215205 |
Number of pages | 7 |
DOIs | |
Publication status | Published - 24 May 2022 |
Event | SPIE Photonics Europe 2022: Mesophotonics: Physics and Systems at Mesoscale - Strasbourg, France Duration: 3 Apr 2022 → 7 Apr 2022 Conference number: 12152 https://spie.org/conferences-and-exhibitions/photonics-europe |
Conference
Conference | SPIE Photonics Europe 2022 |
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Country/Territory | France |
City | Strasbourg |
Period | 3/04/22 → 7/04/22 |
Internet address |