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Modeling of gold circular sub-wavelength apertures on a fiber endface for refractive index sensing

DOI: 10.1007/s13320-012-0068-1

Keywords: Optical fiber,surface plasmon resonance,periodic array,refractive index sensing,finite-difference time-domain

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Abstract:

A finite-difference time-domain approach was used to investigate the excitation of surface plasmons of the circular sub-wavelength apertures on an optical fiber endface. This phenomenon provided the basis of a sensitive liquid refractive index sensor. The proposed sensor is compact and has the potential to be used in biomedical applications, having a sensitivity of (373 ± 16) nm per refractive index unit (RIU) as found through the variation of a reflection minimum with the wavelength.

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