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Results 31-40 of 79 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2008Porous fibre: A novel THz waveguideAtakaramians, S.; Afshar Vahid, S.; Fischer, B.; Abbott, D.; Monro, T.; Eggleton, B.; OECC/ACOFT 2008
2007Microwire fibers for low-loss THz transmissionAtakaramians, S.; Afshar Vahid, S.; Fischer, B.; Ebendorff-Heidepriem, H.; Monro, T.; Abbott, D.; Al-Sarawi, S.F.; Smart Structures, Devices, and Systems (3rd : 2006 : Adelaide, Australia)
2012Recent progress in theory of nonlinear pulse propagation in subwavelength waveguidesAfshar Vahid, S.; Zhang, W.; Lohe, M.; Monro, T.; Piprek, J.; Lu, W.; International Conference on Numerical Simulation of Optoelectronic Devices (12th : 2012 : Shanghai, China)
2008Highly efficient fluorescence sensing using microstructured optical fibres: general model and experimentAfshar Vahid, S.; Monro, T.; Ebendorff-Heidepriem, H.; Ruan, Y.; Warren-Smith, S.; Sampson, D.; Collins, S.; Oh, K.; Yamauchi, R.; International Conference on Optical Fibre Sensors (19th : 2008 : Perth, W.Aust.)
2011Single photon emission from nanodiamond in tellurite glassGibson, B.; Henderson, M.; Ebendorff-Heidepriem, H.; Kuan, K.; Afshar Vahid, S.; Orwa, J.; Aharonovich, I.; Tomljenovic-Hanic, S.; Prawer, S.; Monro, T.; Greentree, A.; IQEC/CLEO (2011 : Sydney, Australia)
2011Optical fibre coated with diamond nanocrystals: novel sensing architectureAfshar Vahid, S.; Henderson, M.; Greentree, A.; Monro, T.; IQEC/CLEO (2011 : Sydney, Australia)
2014Investigation of a fibre-coupled beryllium oxide (BeO) ceramic luminescence dosimetry systemSantos, A.; Mohammadi, M.; Afshar Vahid, S.
2013Enhancing the radiation efficiency of dye doped whispering gallery mode microresonatorsFrançois, A.; Rowland, K.; Afshar Vahid, S.; Henderson, M.; Monro, T.
2011Diamond in Tellurite glass: a new medium for quantum informationHenderson, M.; Gibson, B.; Ebendorff-Heidepriem, H.; Kuan, K.; Afshar Vahid, S.; Orwa, J.; Aharonovich, I.; Tomljenovic-Hanic, S.; Greentree, A.; Prawer, S.; Monro, T.
2013Understanding the contribution of mode area and slow light to the effective Kerr nonlinearity of waveguidesAfshar Vahid, S.; Monro, T.; de Sterke, C.