Optical Microbubble Resonators with High Refractive Index Inner Coating for Bio-Sensing Applications: An Analytical Approach

The design of Whispering Gallery Mode Resonators (WGMRs) used as an optical transducer for biosensing represents the first and crucial step towards the optimization of the final device performance in terms of sensitivity and Limit of Detection (LoD). Here, we propose an analytical method for the des...

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Published inSensors (Basel, Switzerland) Vol. 16; no. 12; p. 1992
Main Authors Barucci, Andrea, Berneschi, Simone, Giannetti, Ambra, Baldini, Francesco, Cosci, Alessandro, Pelli, Stefano, Farnesi, Daniele, Righini, Giancarlo, Soria, Silvia, Nunzi Conti, Gualtiero
Format Journal Article
LanguageEnglish
Published Switzerland MDPI AG 25.11.2016
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ISSN1424-8220
1424-8220
DOI10.3390/s16121992

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Abstract The design of Whispering Gallery Mode Resonators (WGMRs) used as an optical transducer for biosensing represents the first and crucial step towards the optimization of the final device performance in terms of sensitivity and Limit of Detection (LoD). Here, we propose an analytical method for the design of an optical microbubble resonator (OMBR)-based biosensor. In order to enhance the OMBR sensing performance, we consider a polymeric layer of high refractive index as an inner coating for the OMBR. The effect of this layer and other optical/geometrical parameters on the mode field distribution, sensitivity and LoD of the OMBR is assessed and discussed, both for transverse electric (TE) and transverse magnetic (TM) polarization. The obtained results do provide physical insights for the development of OMBR-based biosensor.
AbstractList The design of Whispering Gallery Mode Resonators (WGMRs) used as an optical transducer for biosensing represents the first and crucial step towards the optimization of the final device performance in terms of sensitivity and Limit of Detection (LoD). Here, we propose an analytical method for the design of an optical microbubble resonator (OMBR)-based biosensor. In order to enhance the OMBR sensing performance, we consider a polymeric layer of high refractive index as an inner coating for the OMBR. The effect of this layer and other optical/geometrical parameters on the mode field distribution, sensitivity and LoD of the OMBR is assessed and discussed, both for transverse electric (TE) and transverse magnetic (TM) polarization. The obtained results do provide physical insights for the development of OMBR-based biosensor.
The design of Whispering Gallery Mode Resonators (WGMRs) used as an optical transducer for biosensing represents the first and crucial step towards the optimization of the final device performance in terms of sensitivity and Limit of Detection (LoD). Here, we propose an analytical method for the design of an optical microbubble resonator (OMBR)-based biosensor. In order to enhance the OMBR sensing performance, we consider a polymeric layer of high refractive index as an inner coating for the OMBR. The effect of this layer and other optical/geometrical parameters on the mode field distribution, sensitivity and LoD of the OMBR is assessed and discussed, both for transverse electric (TE) and transverse magnetic (TM) polarization. The obtained results do provide physical insights for the development of OMBR-based biosensor.The design of Whispering Gallery Mode Resonators (WGMRs) used as an optical transducer for biosensing represents the first and crucial step towards the optimization of the final device performance in terms of sensitivity and Limit of Detection (LoD). Here, we propose an analytical method for the design of an optical microbubble resonator (OMBR)-based biosensor. In order to enhance the OMBR sensing performance, we consider a polymeric layer of high refractive index as an inner coating for the OMBR. The effect of this layer and other optical/geometrical parameters on the mode field distribution, sensitivity and LoD of the OMBR is assessed and discussed, both for transverse electric (TE) and transverse magnetic (TM) polarization. The obtained results do provide physical insights for the development of OMBR-based biosensor.
Author Farnesi, Daniele
Barucci, Andrea
Berneschi, Simone
Baldini, Francesco
Pelli, Stefano
Soria, Silvia
Righini, Giancarlo
Nunzi Conti, Gualtiero
Giannetti, Ambra
Cosci, Alessandro
AuthorAffiliation 1 Istituto di Fisica Applicata Nello Carrara (CNR IFAC), Via Madonna del Piano 10, 50019 Sesto Fiorentino, Firenze, Italy; a.barucci@ifac.cnr.it (A.B.); s.berneschi@ifac.cnr.it (S.B.); a.giannetti@ifac.cnr.it (A.G.); f.baldini@ifac.cnr.it (F.B.); a.cosci@ifac.cnr.it (A.C.); s.pelli@ifac.cnr.it (S.P.); d.farnesi@ifac.cnr.it (D.F.); giancarlo.righini@centrofermi.it (G.C.R.); g.nunziconti@ifac.cnr.it (G.N.C.)
2 Centro Studi e Ricerche «E. Fermi» Piazza del Viminale 1, 00184 Rome, Italy
AuthorAffiliation_xml – name: 1 Istituto di Fisica Applicata Nello Carrara (CNR IFAC), Via Madonna del Piano 10, 50019 Sesto Fiorentino, Firenze, Italy; a.barucci@ifac.cnr.it (A.B.); s.berneschi@ifac.cnr.it (S.B.); a.giannetti@ifac.cnr.it (A.G.); f.baldini@ifac.cnr.it (F.B.); a.cosci@ifac.cnr.it (A.C.); s.pelli@ifac.cnr.it (S.P.); d.farnesi@ifac.cnr.it (D.F.); giancarlo.righini@centrofermi.it (G.C.R.); g.nunziconti@ifac.cnr.it (G.N.C.)
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Keywords optical microbubble resonator
optical modeling
high refractive index polymer
whispering gallery mode resonators
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Snippet The design of Whispering Gallery Mode Resonators (WGMRs) used as an optical transducer for biosensing represents the first and crucial step towards the...
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SubjectTerms Biosensing Techniques - methods
Biosensors
Coating
Design analysis
high refractive index polymer
Limit of Detection
Mathematical analysis
Microbubbles
optical microbubble resonator
optical modeling
Polymers - chemistry
Refractive index
Refractivity
Refractometry
Resonators
Transducers
whispering gallery mode resonators
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Title Optical Microbubble Resonators with High Refractive Index Inner Coating for Bio-Sensing Applications: An Analytical Approach
URI https://www.ncbi.nlm.nih.gov/pubmed/27898015
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Volume 16
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