We develop a generic model of excitation and fluorescence recapturing within filled microstructured optical fibres (MOFs) with arbitrary structure and demonstrate that the light-matter overlap alone does not determine the optimal fibre choice. Fibre designs with sub-wavelength features and high-index glasses exhibit localised regions of high intensity, and we show that these regions can lead to approximately two orders of magnitude enhancement of fluorescence recapturing. Here we show how this regime can be exploited for sensing and demonstrate experimentally in-fibre excitation and fluorescence recapturing within a filled, solid-core MOF.Shahraam Afshar V., Stephen C. Warren-Smith and Tanya M. Monr
In this work, we show the feasibility of using the evanescent field of a microfiber to excite the fl...
We present improvements to fluorescence sensing in microstructured optical fibers that result in sig...
Microstructured optical fibers allow increased overlap between the evanescent field in the fiber and...
Poster session 1, Article number 70042QA general model of excitation and fluorescence recapturing by...
A general model of excitation and fluorescence recapturing by the forward and backward modes of fill...
New methods for fabricating glass exposed-core microstructured optical fiber are demonstrated. The f...
Published 3 Aug 2016Microstructured optical fibers, particularly those with a suspended-core geometr...
We demonstrate a new detection limit for fluorescent species in small-core glass microstructured opt...
The absorption and fluorescence sensing properties of liquid-immersed exposed-core microstructured o...
A unique optical fibre design is presented in this work: a laterally accessible microstructured opti...
A model for the fluorescence sensing properties of small-core high-refractive-index fibers (optical ...
Poster session 1, Article number 70041XA model is presented for calculating the performance of fluor...
We present improvements to fluorescence sensing in soft-glass microstructured optical fibers that re...
In this review, we examine recent developments in the field of chemical and biological sensing utili...
Available online 10 August 2016The fluorescence spectra and photostability under 532 nm laser excita...
In this work, we show the feasibility of using the evanescent field of a microfiber to excite the fl...
We present improvements to fluorescence sensing in microstructured optical fibers that result in sig...
Microstructured optical fibers allow increased overlap between the evanescent field in the fiber and...
Poster session 1, Article number 70042QA general model of excitation and fluorescence recapturing by...
A general model of excitation and fluorescence recapturing by the forward and backward modes of fill...
New methods for fabricating glass exposed-core microstructured optical fiber are demonstrated. The f...
Published 3 Aug 2016Microstructured optical fibers, particularly those with a suspended-core geometr...
We demonstrate a new detection limit for fluorescent species in small-core glass microstructured opt...
The absorption and fluorescence sensing properties of liquid-immersed exposed-core microstructured o...
A unique optical fibre design is presented in this work: a laterally accessible microstructured opti...
A model for the fluorescence sensing properties of small-core high-refractive-index fibers (optical ...
Poster session 1, Article number 70041XA model is presented for calculating the performance of fluor...
We present improvements to fluorescence sensing in soft-glass microstructured optical fibers that re...
In this review, we examine recent developments in the field of chemical and biological sensing utili...
Available online 10 August 2016The fluorescence spectra and photostability under 532 nm laser excita...
In this work, we show the feasibility of using the evanescent field of a microfiber to excite the fl...
We present improvements to fluorescence sensing in microstructured optical fibers that result in sig...
Microstructured optical fibers allow increased overlap between the evanescent field in the fiber and...