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Enhanced four-wave mixing with nonlinear plasmonic metasurfaces
Boyuan Jin,
Christos Argyropoulos
Electrical Engineering
Research output
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Contribution to journal
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Article
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peer-review
47
Scopus citations
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Dive into the research topics of 'Enhanced four-wave mixing with nonlinear plasmonic metasurfaces'. Together they form a unique fingerprint.
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Keyphrases
Four-wave Mixing
100%
Nanogap
40%
Local Electric Field
20%
Order of Magnitude
20%
Incident Angle
20%
Ultrathin
20%
Excitation Source
20%
Dielectric
20%
Nineteen
20%
Power Output
20%
Subwavelength
20%
Nonlinear Process
20%
Metallic Films
20%
Radiated Power
20%
Nanoregions
20%
Plasmonic Metasurfaces
20%
Mixer
20%
Optical Source
20%
Mixing Efficiency
20%
Localized Plasmon Resonance
20%
Material Nonlinearity
20%
Phase-matching Condition
20%
Coherent Wave
20%
Excitation Power
20%
Metasurface Design
20%
THz Source
20%
Ultra-strong
20%
Engineering
Plasmonics
100%
Metasurface
100%
Nanoscale
20%
Dielectrics
20%
Directional
20%
Incident Angle
20%
Radiation Pattern
20%
Excitation Source
20%
Output Power
20%
Nonlinear Process
20%
Radiated Power
20%
Mixers (Machinery)
20%
Optical Source
20%
Phase Matching Condition
20%
Material Science
Silver
100%
Film
100%
Metallic Films
100%
Physics
Four-Wave Mixing
100%
Metasurface
100%
Nanoscale
20%
Phase Matching
20%
Plasmon
20%