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Observing Optical Plasmons on a Single Nanometer Scale
Moshik Cohen
,
Reuven Shavit
, Zeev Zalevsky
Department of Electrical & Computer Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
21
Scopus citations
Overview
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Keyphrases
Nanometer Scale
100%
Scanning Kelvin Probe Force Microscopy (SKPFM)
100%
Tunable Plasmon
100%
Surface Plasmon
50%
Light-matter Interaction
25%
Material Properties
25%
Spatial Resolution
25%
Plasmon Modes
25%
Nanophotonics
25%
Quantum Properties
25%
Resolution Sensitivity
25%
Work Function
25%
Rapid Expansion
25%
Measurement Sensitivity
25%
Quantum Plasmonics
25%
Electromagnetic Properties
25%
Optical Near Field
25%
Optical Illumination
25%
Calculation Results
25%
Plasmonic Wave
25%
Plasmonic Imaging
25%
Scientific Frontiers
25%
Energy Considerations
25%
Plasmonic Structures
25%
High-resolution Measurements
25%
Spatial Measurement
25%
Deep Subwavelength
25%
Physics
Surface Plasmon
100%
Plasmon
100%
Theoretical Model
50%
Nanoscale
50%
Nanophotonics
50%
Optical Imaging
50%
Electromagnetic
50%
High Resolution
50%
Property of Materials
50%
Engineering
Plasmonics
100%
Nanometre
100%
Surface Plasmon
50%
Energy Engineering
25%
Nanoscale
25%
Spatial Resolution
25%
High Resolution
25%
Potential Application
25%
Measurement Sensitivity
25%
Obtained Image
25%
Material Science
Surface Plasmon
100%
Optical Imaging
50%
Theoretical Calculation
50%