作者
Wei Ru Wong, Oleksiy Krupin, Faisal Rafiq Mahamd Adikan, Pierre Berini
发表日期
2015/5/8
期刊
Journal of Lightwave Technology
卷号
33
期号
15
页码范围
3234-3242
出版商
IEEE
简介
The design and optimization of straight long-range surface plasmon waveguides to maximize attenuation surface sensitivity in biochemical sensing applications are discussed. The sensor consists of a Au stripe embedded in CYTOP, with a microfluidic channel etched into the top cladding to expose the surface of the Au stripe and define the sensing channel. The attenuation α s of the structure changes as a biological adlayer grows on the Au surface. The dimensions of the stripe (thickness, width), the sensing length and the refractive index of the sensing buffer were varied in order to understand their impact on sensor performance. The attenuation sensitivity ∂α s /∂a dominates over a wide range of waveguide designs, so we define a parameter K = (∂α s /∂a)/αs where maximizing |K| and selecting the optimal sensing length as L opt = 1/(2α s ) maximizes the overall sensitivity of the structure. Experimental results …
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