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Dupuis, A., Dadouchi, C., & Agard, B. (2022, June). Tacit knowledge in production sequencing: a Seq2Seq-LSTM approach [Paper]. 10th IFAC Conference on Manufacturing Modelling, Management and Control (MIM 2022), Nantes, France. Published in IFAC PapersOnLine, 55(10). External link
Dupuis, A., Dadouchi, C., & Agard, B. (2022, July). Using artificial intelligence to predict crop rotation for sustainable agriculture [Poster]. IEEE International Conference on Communications (ICC 2022), Seoul, South Korea. Unavailable
Dupuis, A., Mazhorova, A., Desevedavy, F., & Skorobogatiy, M. A. (2010, May). Loss and spectral measurements of porous and non-porous subwavelength THz fibers [Paper]. Conference on Lasers and Electro-Optics (CLEO), San Jose, California. External link
Dupuis, A., Mazhorova, A., Desevedavy, F., & Skorobogatiy, M. A. (2010, September). Propagation loss measurements of porous THz subwavelength fibers [Paper]. 35th International Conference on Infrared, Millimeter, and Terahertz Waves (IRMMW-THz 2010), Rome. External link
Dupuis, A., Mazhorova, A., Desevedavy, F., Roze, M., & Skorobogatiy, M. A. (2010). Spectral characterization of porous dielectric subwavelength THz fibers fabricated using a microstructured molding technique. Optics Express, 18(13), 13813-13828. External link
Dupuis, A., Guo, N., Gauvreau, B., Hassani, A., Pone, E., Boismenu, F., & Skorobogatiy, M. A. (2008, May). "Colorful" solid-core Bragg fibers guiding in the visible [Paper]. Conference on Lasers and Electro-Optics and Conference on Quantum Electronics and Laser Science (CLEO-QELS 2008), San Jose, CA, United States. External link
Dupuis, A., Guo, N., Gauvreau, B., Hassani, A., Pone, E., Boismenu, F., & Skorobogatiy, M. A. (2008, February). All-fiber spectral filtering with solid core photonic band gap Bragg fibers [Paper]. OFC/NFOEC 2008 Optical Fiber Communication Conference/National Fiber Optic Engineers Conference. External link
Dupuis, A., Hassani, A., & Skorobogatiy, M. A. (2008, January). Designs of porous polymer THz fibers [Paper]. Ultrafast Phenomena in Semiconductors and Nanostructure Materials XII, San Jose, California. External link
Dupuis, A., Guo, N., Gao, Y., Skorobogata, O., Gauvreau, B., Dubois, C., & Skorobogatiy, M. A. (2008). Fabrication strategies and potential applications of the “green” microstructured optical fibers. Journal of Biomedical Optics, 13(5), 054003-054003. External link
Dupuis, A., Guo, N., Gao, Y., Gauvreau, B., Dubois, C., & Skorobogatiy, M. A. (2008, May). Prospects for "green" microstructured optical fibers [Paper]. Conference on Lasers and Electro-Optics and Conference on Quantum Electronics and Laser Science (CLEO-QELS 2008), San Jose, CA, United States. External link
Dupuis, A., Guo, N., Gauvreau, B., Hassani, A., Pone, E., Boismenu, F., & Skorobogatiy, M. A. (2007). Guiding in the Visible With "Colorful" Solid-Core Bragg Fibers. Optics Letters, 32(19), 2882-2884. External link
Dupuis, A., Guo, N., Gao, Y., Godbout, N., Lacroix, S., Dubois, C., & Skorobogatiy, M. A. (2007). Prospective for Biodegradable Microstructured Optical Fibers. Optics Letters, 32(2), 109-111. External link
Dupuis, A., Gao, Y., Guo, N., Pone, E., Godbout, N., Lacroix, S., Dubois, C., & Skorobogatiy, M. A. (2006, September). Biodegradable, double-core, porous optical fiber [Paper]. 15th International Conference on Plastic Optical Fibers, Seoul, Korea. Unavailable
Dupuis, A., Gao, Y., Guo, N., Pone, E., Godbout, N., Lacroix, S., Dubois, C., & Skorobogatiy, M. A. (2006, May). Biodegradable, double-core, porous optical fiber [Paper]. CLEO 2006, Long Beach, CA, USA. External link
Dupuis, A., Gao, Y., Guo, N., Pone, E., Godbout, N., Lacroix, S., Dubois, C., & Skorobogatiy, M. A. (2006, October). Biodegradable, double-core, porous optical fiber for sensing applications [Paper]. 18th International Conference on Optical Fiber Sensors, Cancun, Mexico. External link
Guo, N., Gao, Y., Dupuis, A., Pone, E., Lacroix, S., Dubois, C., & Skorobogatiy, M. A. (2006, September). Fabrication of the hollow all-polymer Bragg fibers [Paper]. 15th International Conference on Plastic Optical Fibers, Seoul, Korea. Unavailable
Hassani, A., Dupuis, A., & Skorobogatiy, M. A. (2008). Low loss porous terahertz fibers containing multiple subwavelength holes. Applied Physics Letters, 92(7). External link
Hassani, A., Dupuis, A., & Skorobogatiy, M. A. (2008, May). Low loss THz fibers with multiple subwavelength holes [Paper]. Conference on Lasers and Electro-Optics and Conference on Quantum Electronics and Laser Science (CLEO-QELS 2008), San Jose, CA, United States. External link
Hassani, A., Dupuis, A., & Skorobogatiy, M. A. (2008). Porous Polymer Fibers for Low-Loss Terahertz Guiding. Optics Express, 16(9), 6340-6351. External link
Hassani, A., Dupuis, A., & Skorobogatiy, M. A. (2008). Surface-Plasmon-Resonance-Like Fiber-Based Sensor at Terahertz Frequencies. Journal of the Optical Society of America. B, Optical Physics, 25(10), 1771-1775. External link
Pone, E., Dubois, C., Guo, N., Gao, Y., Dupuis, A., Lacroix, S., & Skorobogatiy, M. A. (2006, April). Drawing of hollow multilayered all-polymer fibers [Paper]. Smart Nanotextiles. Symposium, San Francisco, CA, USA. External link
Pone, E., Dubois, C., Guo, N., Gao, Y., Dupuis, A., Boismenu, F., Lacroix, S., & Skorobogatiy, M. A. (2006). Drawing of the Hollow All-Polymer Bragg Fibers. Optics Express, 14(13), 5838-5852. External link
Pone, E., Dubois, C., Guo, N., Gao, A., Dupuis, A., Lacroix, S., & Skorobogatiy, M. A. (2006, September). Fabrication of the hollow all-polymer Bragg fibers [Paper]. 32nd European Conference on Optical Communication, Cannes, France. External link
Skorobogatiy, M. A., Dupuis, A., & Guo, N. (2007, March). Design and fabrication of ferroelectric all-polymer hollow Bragg fibers for THz guidance [Paper]. OFCNFOEC 2007 : Optical Fiber Communication Conference and Exposition National Fiber Optic Engineers Conference, Anaheim, CA, USA. External link
Skorobogatiy, M. A., & Dupuis, A. (2007). Ferroelectric All-Polymer Hollow Bragg Fibers for Terahertz Guidance. Applied Physics Letters, 90(11), 13514-13514. External link