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Photonic nanojet enhancement of backscattering of light by nanoparticles: a potential novel visible-light ultramicroscopy technique

Optics Express · 2004 · Vol. 12(7) · pp. 1214–1214
Zhigang ChenAllen TafloveVadim Backman

Abstract

We report what we believe to be the first evidence of localized nanoscale photonic jets generated at the shadow-side surfaces of micronscale, circular dielectric cylinders illuminated by a plane wave. These photonic nanojets have waists smaller than the diffraction limit and propagate over several optical wavelengths without significant diffraction. We have found that such nanojets can enhance the backscattering of visible light by nanometer-scale dielectric particles located within the nanojets by several orders of magnitude. Not involving evanescent fields and not requiring mechanical scanning, photonic nanojets may provide a new means to detect and image nanoparticles of size well below the diffraction limit. This could yield a potential novel ultramicroscopy technique using visible light for detecting proteins, viral particles, and even single molecules; and monitoring molecular synthesis and aggregation processes of importance in many areas of biology, chemistry, material sciences, and tissue engineering.

Near-Field Optical MicroscopyIntegrated Circuits and Semiconductor Failure AnalysisAdvanced Fluorescence Microscopy TechniquesOpticsPhotonicsDiffractionMaterials scienceDielectricNanophotonicsWavelengthRayNanoparticleNanoscopic scale

Funding

  • National Science Foundation
Citations
832
FWCI
6.49
field-weighted impact
References
17
Percentile
97%
vs. same field & year
Citations per year
References
A perfectly matched layer for the absorption of electromagnetic waves
Journal of Computational Physics · 1994 · 9,855 citations
Optical stethoscopy: Image recording with resolution λ/20
Applied Physics Letters · 1984 · 1,998 citations
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