Browsing by Author Jackson, Stuart

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Issue DateTitleAuthor(s)Citation
200810 kHz linewidth distributed feedback photonic crystal fibre (DFB-PCF) laserCanning, John; Groothoff, Nathaniel; Jackson, Stuart; Martelli, Cicero; Michie, Andrew; De Iuliis, Jason D; Holdsworth, John L; Chemistry; Physics; Physics; Electrical Engineering; Physics10 kHz linewidth distributed feedback photonic crystal fibre (DFB-PCF) laser, Proceedings of the SPIE, 19th International Conference on Optical Fibre Sensors, vol.7004, 2008, pp. 70042I-1-70042I-4
20111W diode-pumped tunable Ho3+, Pr3+-doped fluoride glass fibre laserHudson, Darren D.; Jackson, Stuart; Magi, Eric; Gomes, Laercio; Physics; Physics; Physics1W diode-pumped tunable Ho3+, Pr3+-doped fluoride glass fibre laser, Electronics Letters, vol.47, 17, 2011,pp 985-986
20032.7-WHo3+ -doped silica fibre laser pumped at 1100 nm and operating at 2.1 μmJackson, Stuart; Physics2.7-WHo3+ -doped silica fibre laser pumped at 1100 nm and operating at 2.1 μm, Applied Physics B: Lasers and Optics, vol.76,(7),2003,pp 793-795
2003210 mW 2,84 um Ho3+ , Pr3+ -doped fluoride fibre laserJackson, Stuart; Physics210 mW 2,84 um Ho3+ , Pr3+ -doped fluoride fibre laser, Electronics Letters, vol.39,(10),2003,pp 772-773
20143.4 W Ho3+, Pr3+ co-doped fluoride fibre laserCrawford, Stephanie; Hudson, Darren D.; Jackson, Stuart; Physics; Physics; Physics3.4 W Ho3+, Pr3+ co-doped fluoride fibre laser, Proceedings of the CLEO: QELS_Fundamental Science (CLEO_QELS 2014), vol.N/A, 2014, pp. 1-2
200585W Tm3+ -doped 2um fibre laser pumped at 793nmJackson, Stuart; Frith, G.P.; Lancaster, D G; Physics85W Tm3+ -doped 2um fibre laser pumped at 793nm, LEOS 2005 - 2005 IEEE LEOS Annual Meeting Conference Proceedings, vol.N/A,(),2005,pp 746-747
2012Actively Q-switched 2.9 mm Ho 3+Pr 3+- doped fluoride fiber laserHu, Tomonori; Hudson, Darren D.; Jackson, Stuart; Physics; Physics; PhysicsActively Q-switched 2.9 mm Ho 3+Pr 3+- doped fluoride fiber laser, Optics Letters, vol.37, 11, 2012,pp 2145-2147
2012Actively Q-switched and mode-locked Tm 3+-doped silicate 2 μm fiber laser for supercontinuum generation in fluoride fiberJackson, Stuart; Eckerle, Michael; Eichhorn, Marc; Kieleck, C; Maze, Gwenael; Swiderski, Jacek; PhysicsActively Q-switched and mode-locked Tm 3+-doped silicate 2 μm fiber laser for supercontinuum generation in fluoride fiber, Optics Letters, vol.37, 4, 2012,pp 512-514
2008Actively Q-switched Tm3+-doped and Tm3+, Ho3+-codoped silica fiber lasersJackson, Stuart; Eichhorn, Marc; PhysicsActively Q-switched Tm3+-doped and Tm3+, Ho3+-codoped silica fiber lasers, Conference on Lasers and Electro-Optics/Quantum Electronics and Laser Science Conference and Photonic Applications Systems Technologies 2008 Technical Digest, vol.N/A, 2008, pp. 2 pages-N/A
2014Aim at the bottom: Directly exciting the lower level of a laser transition for additional functionalityHu, Tomonori; Hudson, Darren D.; Iwanus, Nikolas; Jackson, Stuart; Physics; Physics; Physics; PhysicsAim at the bottom: Directly exciting the lower level of a laser transition for additional functionality, Optics Letters, vol.39, 5, 2014,pp 1153-1156
2005Air-clad fibre laser with internal Bragg gratingAshton, Brian; Aslund, Mattias; Canning, John; Groothoff, Nathaniel; Jackson, Stuart; Lyytikainen, K; Chemistry; Chemistry; Chemistry; Physics; Physics; ChemistryAir-clad fibre laser with internal Bragg grating, Electronics Letters 2005, vol.41,(20),2005,pp 1103-1104
2007Application and development of high-power and highly efficient silica-based fiber lasers operating at 2 mu mJackson, Stuart; Lancaster, D G; Sabella, A; PhysicsApplication and development of high-power and highly efficient silica-based fiber lasers operating at 2 mu m, IEEE Journal on Selected Topics in Quantum Electronics, vol.13,(3),2007,pp 567-572
2008Birefringent all-solid hybrid microstructured fiberEggleton, Benjamin; Fleming, Simon; Goto, Ryuichiro; Jackson, Stuart; Kuhlmey, Boris; Himeno, Kuniharu; Physics; Physics; Physics; Physics; PhysicsBirefringent all-solid hybrid microstructured fiber, Optics Express, vol.16, 23, 2008,pp 18752-18763
2004Characterisation Of A Nd3+-Doped Fibre Laser Incorporating An Etalon Formed Between The Fibre Facet And Dielectric MirrorFleming, Simon; Jackson, Stuart; Li, Yahua; Physics; Physics; Electrical EngineeringCharacterisation Of A Nd3+-Doped Fibre Laser Incorporating An Etalon Formed Between The Fibre Facet And Dielectric Mirror, Optics Communications, vol.240,(4-6),2004,pp 385-389
2013CMOS compatible chips for applications in nonlinear opticsJackson, Stuart; Moss, David; Morandotti, Roberto; Pasquazi, Alessia; Peccianti, Marco; Physics; PhysicsCMOS compatible chips for applications in nonlinear optics, Proceedings of SPIE Photonics North 2013, vol.8915, 2013, pp. 1-7
2008Comparative study of continuous wave Tm3+-doped silica and fluoride fiber lasersJackson, Stuart; Eichhorn, Marc; PhysicsComparative study of continuous wave Tm3+-doped silica and fluoride fiber lasers, Applied Physics B: Lasers and Optics, vol.90, 1, 2008,pp 35-41
2003Continuous wave 2.9 um dysprosium-doped fluoride fiber laserJackson, Stuart; PhysicsContinuous wave 2.9 um dysprosium-doped fluoride fiber laser, Applied Physics Letters, vol.83,(7),2003,pp 1316-1318
2005Cooperative luminescence and absorption in ytterbium doped aluminosilicate glass optical fibres and preforms.Jackson, Stuart; Ryan, Thomas; Physics; Optic Fibre Technology CentCooperative luminescence and absorption in ytterbium doped aluminosilicate glass optical fibres and preforms., BGPP/ACOFT 2005 Conference CD-ROM Proceedings, vol.N/A,(),2005,pp 1-3
2004Cross relaxation and energy transfer upconversion processes relevant to the functioning of 2 um Tm3+ -doped silica fibre lasersJackson, Stuart; PhysicsCross relaxation and energy transfer upconversion processes relevant to the functioning of 2 um Tm3+ -doped silica fibre lasers, Optics Communications, vol.230,(1-3),2004,pp 197-203
2005Diffraction in air-clad fibresAslund, Mattias; Canning, John; Digweed, Katja; Jackson, Stuart; Teixeira, A; Chemistry; Chemistry; Chemistry; Physics; Optic Fibre Technology CentDiffraction in air-clad fibres, Optics Express, vol.13,(14),2005,pp 5227-5233