Prism dispersion effects in near-guided-wave surface plasmon resonance sensors
Refractive index dispersion causes the light line to curve. As a result it is shown that when the prism is dispersive, an additional dip in the spectral response of Surface Plasmon Resonance (SPR) sensors is observed in the Kretschmann-Raether (KR) configuration. Since the new dip evolves in the inf...
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sg-ntu-dr.10356-978492020-06-01T10:21:20Z Prism dispersion effects in near-guided-wave surface plasmon resonance sensors Shalabney, Atef Abdulhalim, Ibrahim School of Materials Science & Engineering DRNTU::Engineering::Materials Refractive index dispersion causes the light line to curve. As a result it is shown that when the prism is dispersive, an additional dip in the spectral response of Surface Plasmon Resonance (SPR) sensors is observed in the Kretschmann-Raether (KR) configuration. Since the new dip evolves in the infrared (IR) region, it exhibits a high sensitivity to the analyte refractive index (RI) changes and the mode penetrates deeper into the analyte. Adding a thin dielectric layer with high refractive index on top of the metallic layer enables to control the dip location and strength. The two dips shift in opposite directions as the analyte RI changes and therefore when the spectral difference is considered as the measurand, higher RI sensitivity is obtained. The dispersion relation of two thin films bounded by two semi-infinite media is derived when the prism dispersion is considered. 2013-07-30T03:56:09Z 2019-12-06T19:47:20Z 2013-07-30T03:56:09Z 2019-12-06T19:47:20Z 2012 2012 Journal Article Shalabney, A., & Abdulhalim, I. (2012). Prism dispersion effects in near-guided-wave surface plasmon resonance sensors. Annalen der Physik, 524(11), 680-686. 0003-3804 https://hdl.handle.net/10356/97849 http://hdl.handle.net/10220/12507 10.1002/andp.201200138 en Annalen der physik © 2012 by WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. |
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DRNTU::Engineering::Materials Shalabney, Atef Abdulhalim, Ibrahim Prism dispersion effects in near-guided-wave surface plasmon resonance sensors |
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Refractive index dispersion causes the light line to curve. As a result it is shown that when the prism is dispersive, an additional dip in the spectral response of Surface Plasmon Resonance (SPR) sensors is observed in the Kretschmann-Raether (KR) configuration. Since the new dip evolves in the infrared (IR) region, it exhibits a high sensitivity to the analyte refractive index (RI) changes and the mode penetrates deeper into the analyte. Adding a thin dielectric layer with high refractive index on top of the metallic layer enables to control the dip location and strength. The two dips shift in opposite directions as the analyte RI changes and therefore when the spectral difference is considered as the measurand, higher RI sensitivity is obtained. The dispersion relation of two thin films bounded by two semi-infinite media is derived when the prism dispersion is considered. |
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School of Materials Science & Engineering |
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School of Materials Science & Engineering Shalabney, Atef Abdulhalim, Ibrahim |
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Article |
author |
Shalabney, Atef Abdulhalim, Ibrahim |
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Shalabney, Atef |
title |
Prism dispersion effects in near-guided-wave surface plasmon resonance sensors |
title_short |
Prism dispersion effects in near-guided-wave surface plasmon resonance sensors |
title_full |
Prism dispersion effects in near-guided-wave surface plasmon resonance sensors |
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Prism dispersion effects in near-guided-wave surface plasmon resonance sensors |
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Prism dispersion effects in near-guided-wave surface plasmon resonance sensors |
title_sort |
prism dispersion effects in near-guided-wave surface plasmon resonance sensors |
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2013 |
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https://hdl.handle.net/10356/97849 http://hdl.handle.net/10220/12507 |
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