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PreviewIssue DateTitleAuthor(s)
2013Single-nanocrystal sensitivity achieved by enhanced upconversion luminescenceZhao, J.; Jin, D.; Schartner, E.; Lu, Y.; Liu, Y.; Zvyagin, A.; Zhang, L.; Dawes, J.; Xi, P.; Piper, J.; Goldys, E.; Monro, T.
2012Lanthanide upconversion within microstructured optical fibers: improved detection limits for sensing and the demonstration of a new tool for nanocrystal characterizationSchartner, E.; Jin, D.; Ebendorff-Heidepriem, H.; Piper, J.; Lu, Z.; Monro, T.
2013Sensitive detection of NaYF₄: Yb/Tm nanoparticles using suspended core microstructured optical fibersSchartner, E.; Jin, D.; Zhao, J.; Monro, T.; Photonics West, BIOS (2013 : San Francisco, California)
2012Enzyme activity assays within microstructured optical fibers enabled by automated alignmentWarren-Smith, S.; Nie, G.; Schartner, E.; Salamonsen, L.; Monro, T.
2016Quantification of the fluorescence sensing performance of microstructured optical fibers compared to multi-mode fiber tipsSchartner, E.; Tsiminis, G.; Henderson, M.; Warren-Smith, S.; Monro, T.
2016Single-ring hollow core optical fibers made by glass billet extrusion for Raman sensingTsiminis, G.; Rowland, K.; Schartner, E.; Spooner, N.; Monro, T.; Ebendorff-Heidepriem, H.
2010Sensing with suspended-core optical fibersMonro, T.; Warren-Smith, S.; Schartner, E.; François, A.; Heng, S.; Ebendorff-Heidepriem, H.; Afshar Vahid, S.
2011Driving down the detection limit in microstructured fiber-based chemical dip sensorsSchartner, E.; Ebendorff-Heidepriem, H.; Warren-Smith, S.; White, R.; Monro, T.
2014Superdots enhance microstructured-fiber properties and remote-sensing capabilitiesSchartner, E.; Ebendorff-Heidepriem, H.; Monro, T.
2011Sensitive fluorescence detection with microstructured optical fibersSchartner, E.; Ebendorff-Heidepriem, H.; Monro, T.; SPIE Defense, Security and Sensing (2011 : Orlando, Florida, USA)