A high efficiency label-free photonic biosensor based on vertically stacked ring resonators

被引:0
作者
C. E. Campanella
C. M. Campanella
F. De Leonardis
V. M. N. Passaro
机构
[1] Politecnico di Bari,Photonics Research Group
[2] Boston University,Integrated Photonics Laboratory
来源
The European Physical Journal Special Topics | 2014年 / 223卷
关键词
European Physical Journal Special Topic; Spectral Response; Ring Resonator; Optical Biosensor; Ring Radius;
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学科分类号
摘要
In this paper we propose an optical biosensor based on two vertically stacked Silicon on Insulator (SOI) micro-ring resonators interacting with a microfluidic ring channel. This device behaves as a resonant optical coupler and it is very sensitive to the variation of the coupling coefficient between the two vertically stacked ring resonators. A ring microfluidic channel is proposed in the coupling region between the two vertically stacked ring resonators. The inner walls of the channel are funzionalized in order to the trap a specific biological species. Assuming a biotin-streptavidin system, the straptividin trapping gives rise to a change of the biological thickness of about 3 nm. This thickness increase of the deposited layer leads to a consequent change in the coupling strength between the two rings. These theoretical predictions have been validated by using both 3D Finite-Difference Time-Domain (FDTD) and 3D full-vectorial Finite Element Method (FEM) approaches. Moreover, by appropriately choosing the design parameters of the micro-resonant structure, we evaluate a sensitivity of the spectral response to the streptavidin adlayer variation of about 20% nm−1 for TE polarization and 34% nm−1 for TM polarization, which represents an important achievement to obtain selective SOI bio-sensors with ultra-high resolution.
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页码:2009 / 2021
页数:12
相关论文
共 23 条
[1]  
Vollmer F.(2012)undefined Nanophotonics 1 267-undefined
[2]  
Service R.F.(1998)undefined Science 282 399-undefined
[3]  
Barrios C.A.(2012)undefined Anal. Bioanal. Chem. 403 1467-undefined
[4]  
Fan X.(2008)undefined Anal. Chim. Acta. 620 8-undefined
[5]  
Passaro V.M.N.(2012)undefined Sensors 12 15558-undefined
[6]  
La Notte M.(2014)undefined Sensors 14 4831-undefined
[7]  
Ciminelli C.(2013)undefined Prog. Quant. Electron. 37 51-undefined
[8]  
De Vos K.(2007)undefined Opt. Express 15 7610-undefined
[9]  
Washburn A.L.(2009)undefined Anal. Chem. 82 69-undefined
[10]  
Lin V.S.-Y.(1997)undefined Science 278 840-undefined