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Issue DateTitleAuthor(s)Citation
2006Efficient coupling to chalcogenide glass photonic crystal waveguides via silica optical fiber nanowiresEggleton, Benjamin; Grillet, Christian; Magi, Eric; Moss, David; Smith, Cameron; Freeman, Darren; Luther-Davies, Barry; Madden, Steve; Physics; Physics; Physics; Physics; PhysicsEfficient coupling to chalcogenide glass photonic crystal waveguides via silica optical fiber nanowires, OPTICS EXPRESS 2005, vol.14,(3),2006,pp 1070-1078
2006High Performance Bragg Gratings in Chalcogenide Glass Rib Waveguides Written with a Modified Sagnac InterferometerBaker, Neil; Eggleton, Benjamin; Littler, Ian; Moss, David; Shokooh-Saremi, M; Taeed, Vahid; Luther-Davies, Barry; Ruan, Yinlan; Physics; Physics; Physics; Physics; Physics; PhysicsHigh Performance Bragg Gratings in Chalcogenide Glass Rib Waveguides Written with a Modified Sagnac Interferometer, Journal of the Optical Society of America B: Optical Physics, vol.23,(7),2006,pp 1323-1331
20141x11 few-mode fiber wavelength selective switch using photonic lanternsBland-Hawthorn, Jonathan (Joss); Carpenter, Joel; Eggleton, Benjamin; Leon-Saval, Sergio Gregorio; Salazar Gil, Joel Rafael; Schroeder, Jochen; Baxter, Glenn; Frisken, Steve; Roelens, Michael A.F.; Stewart, Luke; Physics; Physics; Physics; Physics; Physics; Physics1x11 few-mode fiber wavelength selective switch using photonic lanterns, Optics Express, vol.22, 3, 2014,pp 2216-2221
2012A highly-efficient, 2.9 μm Q-switched Ho/Pr co-doped fiber laserEggleton, Benjamin; Hu, Tomonori; Hudson, Darren D.; Jackson, Stuart; Physics; Physics; Physics; PhysicsA highly-efficient, 2.9 μm Q-switched Ho/Pr co-doped fiber laser, Proceedings of 2012 Conference on Lasers and Electro-Optics, CLEO 2012, vol.N/A, 2012, pp. 6325707-1-6325707-2
2012Multi-core, tapered fiber for nonlinear pulse reshapingButtner, Thomas; Casas Bedoya, Alvaro; Eggleton, Benjamin; Hudson, Darren D.; Magi, Eric; Taunay, Thierry; Physics; Physics; Physics; Physics; PhysicsMulti-core, tapered fiber for nonlinear pulse reshaping, Proceedings of the 2012 Conference on Lasers and Electro-Optics (CLEO), vol.N/A, 2012, pp. 6326904-1-6326904-2
2010Characterization and optimization of photonic crystal fibers for enhanced soliton self-frequency shiftde Sterke, Carel (Martijn); Eggleton, Benjamin; Judge, Alexander; Kuhlmey, Boris; Magi, Eric; Pant, Ravi; Physics; Physics; Physics; Physics; Physics; PhysicsCharacterization and optimization of photonic crystal fibers for enhanced soliton self-frequency shift, Optical Society of America. Journal B: Optical Physics, vol.27, 9,pp 1894-1901
2010Optofluidic Photonic Crystal Fibers: Properties and ApplicationsDomachuk, Peter; Eggleton, Benjamin; Kuhlmey, Boris; Steinvurzel, Paul; Physics; Physics; Physics; PhysicsOptofluidic Photonic Crystal Fibers: Properties and Applications in Optofluidics Fundamentals, Devices, and Applications, McGraw Hill, 2010, pp. 133-176
2012LCOS based waveshaper technology for optical signal processing and performance monitoringEggleton, Benjamin; Schroeder, Jochen; Du, Liang; Lowery, Arthur; Roelens, Michael A.F.; Physics; PhysicsLCOS based waveshaper technology for optical signal processing and performance monitoring, Technical Digest - 2012 17th Opto-Electronics and Communications Conference (OECC 2012), vol.N/A, 2012, pp. 859-860
2008Low-threshold supercontinuum generation in highly nonlinear chalcogenide nanowiresEggleton, Benjamin; Fu, Libin; Lamont, M; Magi, Eric; Roelens, Michael; Yeom, Dong; Physics; Physics; Physics; Physics; Physics; PhysicsLow-threshold supercontinuum generation in highly nonlinear chalcogenide nanowires, Optics Letters, vol.33,(7),2008,pp 660-662
2012Wavelength conversion via FWM in a silicon ring resonator at 10 Gb/s for DPSK signalsEggleton, Benjamin; Li, Fangxin; Moss, David; Pelusi, Mark; Janz, Siegfried; Ma, Rubin; Xu, Dan-Xia; Physics; Physics; Physics; PhysicsWavelength conversion via FWM in a silicon ring resonator at 10 Gb/s for DPSK signals, Proceedings of the 2012 Conference on Lasers and Electro-Optics (CLEO), vol.N/A, 2012, pp. 6326233-1-6326233-2