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A word cloud is a visual representation of the most frequently used words in a text or a set of texts. The words appear in different sizes, with the size of each word being proportional to its frequency of occurrence in the text. The more frequently a word is used, the larger it appears in the word cloud. This technique allows for a quick visualization of the most important themes and concepts in a text.
In the context of this page, the word cloud was generated from the publications of the author {}. The words in this cloud come from the titles, abstracts, and keywords of the author's articles and research papers. By analyzing this word cloud, you can get an overview of the most recurring and significant topics and research areas in the author's work.
The word cloud is a useful tool for identifying trends and main themes in a corpus of texts, thus facilitating the understanding and analysis of content in a visual and intuitive way.
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., 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
Gauvreau, B., Guo, N., Schicker, K., Stoeffler, K., Boismenu, F., Ajji, A., Dubois, C., & Skorobogatiy, M. A. (2009, June). Colorful photonic band gap fiber-based textiles [Paper]. Conference on Lasers and Electro-Optics and 2009 Conference on Quantum Electronics and Laser Science Conference, Baltimore, MD, United states. External link
Gauvreau, B., Desevedavy, F., Guo, N., Khadri, D., Hassani, A., & Skorobogatiy, M. A. (2009). High numerical aperture polymer microstructured fiber with three super-wavelength bridges. Journal of Optics. A, Pure and Applied Optics, 11(8), 085102-085102. External link
Gauvreau, B. (2008). Dispositifs à bande photonique interdite pour des applications de textiles photoniques et capteurs plasmoniques [Master's thesis, École Polytechnique de Montréal]. Available
Gauvreau, B., Hassani, A., Fehri, M. F., Kabashin, A., & Skorobogatiy, M. A. (2007). Photonic Bandgap Fiber-Based Surface Plasmon Resonance Sensors. Optics Express, 15(18), 11413-11426. External link
Gao, Y., Guo, N., Gauvreau, B., Rajabian, M., Skorobogata, O., Pone, E., Zabeida, O., Martinu, L., Dubois, C., & Skorobogatiy, M. A. (2006). Consecutive Solvent Evaporation and Co-Rolling Techniques for Polymer Multilayer Hollow Fiber Preform Fabrication. Journal of Materials Research, 21(9), 2246-2254. External link
Gao, Y., Guo, N., Gauvreau, B., Rajabian, M., Skorobogata, O., Pone, E., Zabeida, O., Martinu, L., Dubois, C., & Skorobogatiy, M. A. (2006, September). Consecutive solvent evaporation and co-rolling techniques for polymer multilayer hollow fiber preform fabrication [Paper]. 15th International Conference on Plastic Optical Fibers, Seoul, Korea. Unavailable
Hassani, A., Gauvreau, B., & Skorobogatiy, M. A. (2008, May). Novel photonic crystal fiber sensors using splitting of a degenerate plasmonic doublet [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., Gauvreau, B., Fehri, M. F., Kabashin, A., & Skorobogatiy, M. A. (2008). Photonic crystal fiber and waveguide-based surface plasmon resonance sensors for application in the visible and near-IR. Electromagnetics, 28(3), 198-213. External link
Hassani, A., Gauvreau, B., Fassi Fehri, M., Kabashin, A., & Skorobogatiy, M. A. (2007, January). Photonic bandgap fiber-based surface plasmon resonance sensors [Paper]. Workshop on Nanophotonics and Plasmonics, Sao Paulo, Brazil. Unavailable