<link rel="stylesheet" href="styles.f3b1fba60ec7970c.css">

Publication:
Analysis of an optical biosensor based on elastic light scattering from diamond-, glass-, and sapphire microspheres

Loading...
Thumbnail Image

Departments

Item type:Organizational Unit,
Item type:Organizational Unit,

School / College / Institute

Item type:Organizational Unit,
Item type:Organizational Unit,

Program

Organization Authors

Co-Authors

Murib, Mohammed S.

Tran, Anh Quang

De Ceuninck, Ward

Schöning, Michael J.

Nesladek, Milos

Wagner, Patrick

Date

Language

Embargo Status

N/A

Journal Title

Journal ISSN

Volume Title

Alternative Title

Abstract

Deoxyribonucleic acid (DNA) and protein recognition are now standard tools in biology. In addition, the special optical properties of microsphere resonators expressed by the high quality factor (Q-factor) of whispering gallery modes (WGMs) or morphology dependent resonances (MDRs) have attracted the attention of the biophotonic community. Microsphere-based biosensors are considered as powerful candidates to achieve label-free recognition of single molecules due to the high sensitivity of their WGMs. When the microsphere surface is modified with biomolecules, the effective refractive index and the effective size of the microsphere change resulting in a resonant wavelength shift. The transverse electric (TE) and the transverse magnetic (TM) elastic light scattering intensity of electromagnetic waves at 600 and 1400?nm are numerically calculated for DNA and unspecific binding of proteins to the microsphere surface. The effect of changing the optical properties was studied for diamond (refractive index 2.34), glass (refractive index 1.50), and sapphire (refractive index 1.75) microspheres with a 50 mu m radius. The mode spacing, the linewidth of WGMs, and the shift of resonant wavelength due to the change in radius and refractive index, were analyzed by numerical simulations. Preliminary results of unspecific binding of biomolecules are presented. The calculated shift in WGMs can be used for biomolecules detection.

Source

Publisher

Wiley-V C H Verlag Gmbh

Citation

item.page.haspartof

Source

Physica Status Solidi A-Applications and Materials Science

item.page.ispartofseries

item.page.edition

DOI

10.1002/pssa.201100795

item.page.datauri

item.page.link

Rights

N/A

Copyrights Note

Rights and licensing

N/A

Endorsement

Review

Supplemented By

Referenced By

Related Patent

Related Goal

Google Scholar
Scholar'da Ara ↗
2
Görüntülenme
0
İndirme
Altmetric
Dimensions
PlumX Metrikleri
BIP! Indicators