Polymeric variable optical attenuator based on surface plasmon polariton

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초록

We propose a polymeric variable optical attenuator based on long range surface plasmon polaritons (LRSPPs) along a thin metal stripe embedded in polymers. The device is operated by controlling radiation loss of the LRSPP mode resulting from the temperature gradient of the polymer cladding caused by a heater. For guiding LRSPPs and efficient coupling of single mode fibers, gold stripes with 20-nm thickness, 4-μm width and 1-cm length are utilized. To obtain long physical lifetime, the heater is formed on the top of the polymer cladding with a 200-nm Au film which is about ten times thicker than the thin metal waveguide. The fabricated device is characterized at a wavelength of 1.55 μm, exhibiting high attenuation of less than 30 dB with the operating power of 100 mW. The fiber-to-fiber total insertion loss of 6.1 dB is achieved when using single mode fibers.

키워드

Insertion lossesOptical fibersOptical waveguidesPolymersStrip metalSurface plasmon resonanceLong range surface plasmon polaritons (LRSPP)Optical attenuatorsPolaritonsPolymer claddingWaveguide attenuators
제목
Polymeric variable optical attenuator based on surface plasmon polariton
저자
Park, SuntakEom, Yong-SungWon, Hyong SikSong, Seok Ho
DOI
10.1117/12.661655
발행일
2006-04
유형
Conference Paper
저널명
Proceedings of SPIE - The International Society for Optical Engineering
6183
페이지
1 ~ 7