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Stephen Collins
Stephen Collins
Verified email at vu.edu.au
Title
Cited by
Cited by
Year
Fluorescence intensity ratio technique for optical fiber point temperature sensing
SA Wade, SF Collins, GW Baxter
Journal of Applied physics 94 (8), 4743-4756, 2003
12602003
Comparison of fluorescence-based temperature sensor schemes: theoretical analysis and experimental validation
SF Collins, GW Baxter, SA Wade, T Sun, KTV Grattan, ZY Zhang, ...
Journal of applied physics 84 (9), 4649-4654, 1998
4191998
Metal‐organic‐framework‐coated optical fibers as light‐triggered drug delivery vehicles
M Nazari, M Rubio‐Martinez, G Tobias, JP Barrio, R Babarao, F Nazari, ...
Advanced Functional Materials 26 (19), 3244-3249, 2016
982016
Nondestructive imaging of a type I optical fiber Bragg grating
NM Dragomir, C Rollinson, SA Wade, AJ Stevenson, SF Collins, ...
Optics letters 28 (10), 789-791, 2003
842003
Visible and near infra-red up-conversion in Tm3+/Yb3+ co-doped silica fibers under 980 nm excitation
DA Simpson, WEK Gibbs, SF Collins, W Blanc, B Dussardier, G Monnom, ...
Optics express 16 (18), 13781-13799, 2008
812008
Nd3+-doped optical fiber temperature sensor using the fluorescence intensity ratio technique
SA Wade, JC Muscat, SF Collins, GW Baxter
Review of scientific instruments 70 (11), 4279-4282, 1999
731999
Characteristics of potential fibre Bragg grating sensor-based devices at elevated temperatures
S Pal, J Mandal, T Sun, KTV Grattan, M Fokine, F Carlsson, PY Fonjallaz, ...
Measurement Science and Technology 14 (7), 1131, 2003
722003
Self-referenced point temperature sensor based on a fluorescence intensity ratio in Yb3+-doped silica fiber
E Maurice, SA Wade, SF Collins, G Monnom, GW Baxter
Applied optics 36 (31), 8264-8269, 1997
691997
Non-linear temperature dependence of Bragg gratings written in different fibres, optimised for sensor applications over a wide range of temperatures
S Pal, T Sun, KTV Grattan, SA Wade, SF Collins, GW Baxter, B Dussardier, ...
Sensors and Actuators A: Physical 112 (2-3), 211-219, 2004
672004
High-temperature-resistant chemical composition Bragg gratings in Er3+-doped optical fiber
S Trpkovski, DJ Kitcher, GW Baxter, SF Collins, SA Wade
Optics letters 30 (6), 607-609, 2005
552005
A localized surface plasmon resonance-based optical fiber sensor with sub-wavelength apertures
H Nguyen, F Sidiroglou, SF Collins, TJ Davis, A Roberts, GW Baxter
Applied Physics Letters 103 (19), 2013
502013
1. Morrison, DW Devins, DL Friesel and WP Jones
W Bauhoff, SF Collins, RS Henderson, GG Shute, BM Spicer, VC Officer, ...
Nucl. Phys. A 410, 180, 1983
491983
Temperature dependence of the fluorescence lifetime in glass for fiber optic thermometry
T Sun, ZY Zhang, KTV Grattan, AW Palmer, SF Collins
Review of Scientific Instruments 68 (9), 3447-3451, 1997
481997
Energy transfer up-conversion in Tm3+-doped silica fiber
DA Simpson, GW Baxter, SF Collins, WEK Gibbs, W Blanc, B Dussardier, ...
Journal of non-crystalline solids 352 (2), 136-141, 2006
452006
Dual temperature and strain sensor using a combined fiber Bragg grating and fluorescence intensity ratio technique in -doped fiber
S Trpkovski, SA Wade, GW Baxter, SF Collins
Review of scientific instruments 74 (5), 2880-2885, 2003
442003
Quantitative investigation of the refractive-index modulation within the core of a fiber Bragg grating
BP Kouskousis, CM Rollinson, DJ Kitcher, SF Collins, GW Baxter, ...
Optics express 14 (22), 10332-10338, 2006
432006
Strain-independent temperature measurement by use of a fluorescence intensity ratio technique in optical fiber
SA Wade, SF Collins, KTV Grattan, GW Baxter
Applied Optics 39 (18), 3050-3052, 2000
412000
Reflections near 1030 nm from 1540 nm fibre Bragg gratings: Evidence of a complex refractive index structure
CM Rollinson, SA Wade, NM Dragomir, GW Baxter, SF Collins, A Roberts
Optics communications 256 (4-6), 310-318, 2005
402005
Microscopic and macroscopic aspects of 135 MeV proton scattering from 16O
K Amos, W Bauhoff, I Morrison, SF Collins, RS Henderson, BM Spicer, ...
Nuclear Physics A 413 (2), 255-289, 1984
401984
Effects of high-temperature heat treatment on -doped optical fibers for use in fluorescence intensity ratio based temperature sensing
F Sidiroglou, SA Wade, NM Dragomir, GW Baxter, SF Collins
Review of scientific instruments 74 (7), 3524-3530, 2003
392003
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