Abstract
We present the simulation, fabrication, and characterization of a metallic slot grating on a silicon waveguide (30 nm slot width for a period of 500nm). According to the simulation, the experimental measured spectrum of the structure exhibits a dip in the near-infrared region. Moreover, the finite-difference time-domain simulation shows that this device can be used as a sensor, due to its high sensitivity to the refractive index variation of the medium above and inside the cavity (η = Δλ/Δn = 750nm/refractive index unit). © 2011 Optical Society of America.
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CITATION STYLE
Tan, Q., Cosentino, A., Roussey, M., & Herzig, H. P. (2011). Theoretical and experimental study of a 30 nm metallic slot array. Journal of the Optical Society of America B, 28(7), 1711. https://doi.org/10.1364/josab.28.001711
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