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Bragg Gratings Generated by Coupling of Surface Plasmons Induced on Metal N anoparticles

Song, Seok-Ho   (Microoptics National Research Laboratory (NRL), Department of Physics, Hanyang UniversityUU0001519  ); Won, Hyong-Sik   (Microoptics National Research Laboratory (NRL), Department of Physics, Hanyang UniversityUU0001519  ); Choi, Ki-Young   (Microoptics National Research Laboratory (NRL), Department of Physics, Hanyang UniversityUU0001519  ); Oh, Cha-Hwan   (Microoptics National Research Laboratory (NRL), Department of Physics, Hanyang UniversityUU0001519  ); Kim, Pill-Soo   (Microoptics National Research Laboratory (NRL), Department of Physics, Hanyang UniversityUU0001519  ); Shin, Dong-Wook   (Department of Ceramic Engineering, Hanyang UniversityUU0001519  );
  • 초록

    Diffraction Bragg gratings consisting of metal (silver) nanoparticles are generated inside a soda-lime glass substrate. After ion-exchanging and annealing processes in the glass, the silver nanoparticles are first formed with the particle diameters of 10 nm ∼ 30 nm. By interfering two CW laser beams at ∼ 60 ${\mu}{\textrm}{m}$ deep under the surface of the nanoparticles-dispersed glass, Bragg gratings with thickness of 15 ${\mu}{\textrm}{m}$ and period of 3.5 ${\mu}{\textrm}{m}$ are generated. Diffraction efficiency of the gratings formed by two TE-polarized beams is three times higher than that by two TM-polarized beams. From this polarization dependence, we have found that strong coupling of the surface plasmons induced on the metal particles may contribute dominantly to generate the diffraction grating.


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