Frequency comb transferred by surface plasmon resonance

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Frequency combs, millions of narrow-linewidth optical modes referenced to an atomic clock, have shown remarkable potential in time/frequency metrology, atomic/molecular spectroscopy and precision LIDARs. Applications have extended to coherent nonlinear Raman spectroscopy of molecules and quantum metrology for entangled atomic qubits. Frequency combs will create novel possibilities in nano-photonics and plasmonics; however, its interrelation with surface plasmons is unexplored despite the important role that plasmonics plays in nonlinear spectroscopy and quantum optics through the manipulation of light on a subwavelength scale. Here, we demonstrate that a frequency comb can be transformed to a plasmonic comb in plasmonic nanostructures and reverted to the original frequency comb without noticeable degradation of <6.51 × 10 â '19 in absolute position, 2.92 × 10 â '19 in stability and 1 Hz in linewidth. The results indicate that the superior performance of a well-defined frequency comb can be applied to nanoplasmonic spectroscopy, quantum metrology and subwavelength photonic circuits.
Publisher
NATURE PUBLISHING GROUP
Issue Date
2016-02
Language
English
Article Type
Article
Citation

NATURE COMMUNICATIONS, v.7, no.10685

ISSN
2041-1723
DOI
10.1038/ncomms10685
URI
http://hdl.handle.net/10203/268713
Appears in Collection
ME-Journal Papers(저널논문)
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