Fabrication and operation analysis of a surface-plasmon sensor using a non-propagating mode

Author:

Motogaito Atsushi1,Harada Akitaka1,Hiramatsu Kazumasa1

Affiliation:

1. Mie University

Abstract

Abstract Our research focuses on the development of a surface-plasmon sensor that uses a stationary surface plasmon, referred to as a “non-propagating mode.” This mode is observed when light is incident perpendicularly on a surface-plasmon sensor based on a metal diffraction grating. We performed a comprehensive analysis of the behavior of the surface-plasmon resonances within this non-propagating mode, employing the rigorous coupled-wave analysis (RCWA) method. Using electron-beam lithography, sputtering, and a lift-off process, we fabricated such a surface-plasmon sensor and evaluated its optical properties rigorously. By combining simulations and experiments, we successfully utilized the non-propagating mode to detect a liquid medium with a refractive index of 1.70. Simulations show that the non-propagating mode arises due to a Fano resonance; i.e., to a resonant interaction between a localized surface plasmon generated at the edge of a metal grating strip during normal incidence and a propagating surface plasmon that occurs at the boundary between the metal diffraction grating and the measurement medium. The present results provide useful information for the advancement of surface-plasmon sensing technologies.

Publisher

Research Square Platform LLC

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