Literature DB >> 16406569

Effects of geometry on transmission and sensing potential of tapered fiber sensors.

Angela Leung1, Kishan Rijal, P Mohana Shankar, Raj Mutharasan.   

Abstract

Geometry of tapered fiber sensors critically affects the response of an evanescent field sensor to cell suspensions. Single-mode fibers (nominally at 1300 nm) were tapered to symmetric or asymmetric tapers with diameters in the range of 3-20 microm, and overall lengths of 1-7 mm. Their transmission characteristics in air, water and in the presence of Escherichia coli (JM101 strain) at concentrations of 100, 1000, 7000 and 7 million cells/mL were measured in the 400-800 nm range and gave rich spectral data that lead to the following conclusions. (1) No change in transmission was observed due to E. coli with tapers that showed no relative change in transmission in water compared to air. (2) Tapers that exhibited a significant difference in transmission in water compared to air gave weak response to the presence of the E. coli. Of these, tapers with low waist diameters (6 microm) showed sensitivity to E. coli at 7000 cells/mL and higher concentration. (3) Tapers that showed modest difference in water transmission compared to air, and those that had small waist diameters gave excellent response to E. coli at 100-7000 cells/mL. In addition, mathematical modeling showed that: (1) at low wavelength (470 nm) and small waist diameter (6 microm), transmission with water in the waist region is higher than in air. (2) Small changes in waist diameter (approximately 0.05 microm) can cause larger changes in transmission at 470 nm than at 550 nm at waist diameter of 6 microm. (3) For the same overall geometry, a 5.5 microm diameter taper showed larger refractive index sensitivity compared to a 6.25 microm taper at 470 nm.

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Year:  2006        PMID: 16406569     DOI: 10.1016/j.bios.2005.11.022

Source DB:  PubMed          Journal:  Biosens Bioelectron        ISSN: 0956-5663            Impact factor:   10.618


  2 in total

1.  Enhancement of the SPR Effect in an Optical Fiber Device Utilizing a Thin Ag Layer and a 3092A Liquid Crystal Mixture.

Authors:  Joanna Korec; Karol A Stasiewicz; Katarzyna Garbat; Leszek R Jaroszewicz
Journal:  Molecules       Date:  2021-12-13       Impact factor: 4.411

Review 2.  Comprehensive Review Tapered Optical Fiber Configurations for Sensing Application: Trend and Challenges.

Authors:  Bakr Ahmed Taha; Norazida Ali; Nurfarhana Mohamad Sapiee; Mahmoud Muhanad Fadhel; Ros Maria Mat Yeh; Nur Nadia Bachok; Yousif Al Mashhadany; Norhana Arsad
Journal:  Biosensors (Basel)       Date:  2021-07-27
  2 in total

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