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Active Control of Multiple, Simultaneous Nonlinear Optical Processes in Plasmonic Nanogap Cavities
Qixin Shen
, Weiliang Jin
, Guoce Yang
,
Alejandro W. Rodriguez
, Maiken H. Mikkelsen
Electrical and Computer Engineering
Princeton Materials Institute
Research output
:
Contribution to journal
›
Article
›
peer-review
28
Scopus citations
Overview
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Dive into the research topics of 'Active Control of Multiple, Simultaneous Nonlinear Optical Processes in Plasmonic Nanogap Cavities'. Together they form a unique fingerprint.
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Engineering
Harmonic Generation
100%
Active Control
100%
Plasmonics
100%
Frequency Generation
100%
Relative Strength
100%
Nanoscale
50%
Electric Field
50%
Optical Signal
50%
Field Intensity
50%
Phase Matching Condition
50%
Bulk Crystal
50%
Longitudinal Mode
50%
Physics
Harmonics
100%
Phase Matching
100%
Four-Wave Mixing
100%
Active Control
100%
Electric Fields
50%
Optical Communication
50%
Nanoscale
50%
Material Science
Al2O3
100%
Mechanical Strength
100%
Film
50%
Silver
50%
Keyphrases
Plasmonic Nanogap
100%
Nanogap Cavity
100%
Al2O3 Layer
40%
On-chip Processing
20%
On-chip Manipulation
20%