Items where Subject is "Australian and New Zealand Standard Research Classification > PHYSICAL SCIENCES (020000) > OPTICAL PHYSICS (020500)"
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Number of items at this level: 56.
Journal Article
Andres, Christian & Gramotnev, Dmitri (2003) Grazing Angle Scattering of Waves in Infinitely Wide Periodic Gratings. Optical and Quantum Electronics, 35((2003)), pp. 845-863.
Asejczyk-Widlicka, M, Iskander, Robert, Kasprzak, Henryk, & Srodka, D (2004) Influence of Intraocular Pressure on Geometrical Properties of a Linear Model of the Eyeball: Effect of Optical Self-adjustment. Optik, 115(11), pp. 517-524.
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13Avudainayagam, Chitralekha & Avudainayagam, Kodikullam (2003) Holographic Multivergence Target for Subjective Measurement of the Spherical Power Error of the Human Eye. Optics Letters, 28(2), pp. 123-125.
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3Chou, Alison, Jaatinen, Esa, Buividas, Ricardas, Seniutinas, Gediminas, Juodkazis, Saulius, Izake, Emad L., et al. (2012) SERS substrate for detection of explosives. Nanoscale, 4(23), pp. 7419-7424.
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18Chou, Alison, Vernon, Kristy, Piro, Lennart, Radi, Babak, Jaatinen, Esa, & Davis, Timothy J. (2012) Predicting the localized surface plasmon resonances of spherical nanoparticles on substrate : electrostatic eigenmode method. The Journal of Physical Chemistry Part C : Nanomaterials and Interfaces, 116, pp. 26517-26522.
Cletus, Biju, Kunnemeyer, Rainer, Martinsen, Paul, & McGlone, V. Andrew (2010) Temperature-dependent optical properties of Intralipid® measured with frequency-domain photon-migration spectroscopy. Journal of Biomedical Optics, 15(1), 017003-1-017003-5.
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2Cletus, Biju, Kunnemeyer, Rainer, Martinsen, Paul, McGlone, V. Andrew, & Jordan, Robert (2009) Characterizing liquid turbid media by frequency-domain photon-migration spectroscopy. Journal of Biomedical Optics, 14(2), 024041-1-024041-7.
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4Cletus, Biju, Olds, William J., Fredericks, Peter M., Jaatinen, Esa, & Izake, Emad L. (2013) Real-time detection of concealed chemical hazards under ambient light conditions using Raman spectroscopy. Journal of Forensic Sciences. (In Press)
Cletus, Biju, Olds, William J., Izake, Emad L., Fredericks, Peter M., Panayiotou, Helen, & Jaatinen, Esa (2011) Toward non-invasive detection of concealed energetic materials in-field under ambient-light conditions. Next-Generation Spectroscopic Technologies IV, 8032, 80320I-1.
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1Cletus, Biju, Olds, William J., Izake, Emad L., Sundarajoo, Shankaran, Fredericks, Peter M., & Jaatinen, Esa (2012) Combined time- and space-resolved Raman spectrometer for the non-invasive depth profiling of chemical hazards. Analytical and Bioanalytical Chemistry.
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5Cletus, Biju, Olds, William J., Izake, Emad L., Sundarajoo, Shankaran, Fredericks, Peter M., & Jaatinen, Esa (2012) Field portable time resolved SORS sensor for the identification of concealed hazards. Proceedings of SPIE, 8374. (In Press)
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127Davis, Tim, Vernon, Kristy, & Gomez, Daniel (2009) Effect of retardation on localized surface plasmon resonances in a metallic nanorod. Optics Express, 17(26), pp. 23655-23663.
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7Goodman, Steven, Gramotnev, Dmitri, Mason, Daniel, & Nieminen, Timo (2006) Resonant Coupling Between Bulk Waves and Guided Modes in a Dielectric Slab with a Thick Holographic Grating. Applied Optics, 45(8), pp. 1804-1811.
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2Goodman, Steven, Gramotnev, Dmitri, & Nieminen, Timo (2004) Grazing Angle Scattering of Electromagnetic Waves in Gratings with Varying Mean Parameters: Grating Eigenmodes. Journal of Modern Optics, 51(3), pp. 379-397.
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1Goodman, Steven, Gramotnev, Dmitri, & Pile, David (2004) Grazing Angle Scattering of Electromagnetic Waves in Gratings with Varying Mean Parameters. Journal of Modern Optics, 51(1), pp. 13-29.
Gramotnev, Dmitri, Hopper, Timothy, & Nieminen, T (2002) Extremely Asymmetrical Scattering in Gratings with Varying Mean Structural Parameters. Journal of Modern Optics, 49(9), pp. 1567-1585.
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8Gramotnev, Dmitri & Nieminen, T (2002) Non-steady-state extremely asymmetrical scattering of waves in periodic gratings. Optics Express, 10(6), pp. 268-273.
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4Gramotnev, Dmitri & Nieminen, Timo (2003) Rigorous Analysis of Grazing Angle Scattering of Electromagnetic Waves in Periodic Gratings. Optics Communications, 219, pp. 33-48.
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4Gramotnev, Dmitri & Pile, David (2002) Extremely Asymmetrical Scatterings in Gratings with Weak Dissipation: some Physical Analogies. Applied Physics B: Lasers & Optics, 75, pp. 695-701.
Gramotnev, Dmitri & Pile, David (2003) Frequency Response of Second Order Extremely Asymmetrical Scattering in Wide Uniform Holographic Gratings. Applied Physics B, 77, pp. 663-671.
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1Gramotnev, Dmitri & Pile, David (2003) Higher Order Extremely Asymmetrical Scattering. Optical and Quantum Electronics, 35, pp. 237-257.
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1Gramotnev, Dmitri & Pile, David (2003) Second Order Grazing Angle Scattering in Uniform Wide Holographic Gratings. Applied Physics B, 76, pp. 65-73.
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3Gramotnev, Dmitri, Pile, David, & Vernon, Kristy (2008) Directional coupler using gap plasmon waveguides. Applied Physics B, Lasers and Optics, 93, pp. 99-106.
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15Gramotnev, Dmitri K. & Pile, David F. P. (2004) Single-mode subwavelength waveguide with channel plasmon-polaritons in triangular grooves on a metal surface. Applied Physics Letters, 85(26), pp. 6323-6325.
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131Gramotnev, Dmitri K. & Vernon, Kristy C. (2007) Adiabatic nanofocusing of plasmons by sharp metallic wedges. Applied Physics B: Lasers and Optics, 86(1), pp. 7-17.
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31He, Xiangke, Li, Keyan, Liu, Meinan, He, Yali, Zhang, Xu, Zhao, Yequan, et al. (2008) An optical spectroscopy study of defects in lithium tantalate single crystals. Optics Communications, 281(9), pp. 2531-2534.
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5Hopper, David & Jaatinen, Esa (2008) Compensating for frequency shifts in modulation transfer spectroscopy caused y residual amplitude modulation. Optics and Lasers in Engineering, 46, pp. 69-74.
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4Hopper, David & Jaatinen, Esa (2008) Optimizing modulation transfer spectroscopy signals for frequency locking in the presence of depleted saturating fields. Applied Optics, 47(14), pp. 2574-2582.
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2Izake, Emad L., Cletus, Biju, Olds, William J., Sundarajoo, Shankaran, Fredericks, Peter M., & Jaatinen, Esa (2012) Deep Raman spectroscopy for the non-invasive standoff detection of concealed chemical threat agents. Talanta, 94, pp. 342-347.
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1Jaatinen, Esa, Hopper, David, & Back, Julian (2009) Residual amplitude modulation mechanisms in modulation transfer spectroscopy that use electro-optic modulators. Measurement Science and Technology, 20(2), pp. 1-8.
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3Jaatinen, Esa & Jones, Michael (2008) Theoretical description of low divergence gaussian fields in self-defocusing photorefractive media. Optics Communications, 281(11), pp. 3201-3207.
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3Jaatinen, Esa & Kurth, Martin (2006) Fabrication of Holographic Gratings in Photosensitive Media With a Passively Stable Sagnac Optical Arrangement. Journal of Optics A: Pure and Applied Optics, 8(6), pp. 594-600.
Jones, Michael, Jaatinen, Esa, & Michael, Gregory (2010) Propagation of low-intensity Gaussian fields in photorefractive media with real and imaginary intensity-dependent refractive index components. Applied Physics B: Lasers and Optics, 103(2), pp. 405-411.
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1Jones, Michael, Jaatinen, Esa, & Michael, Gregory (2011) Soliton-like interactions of bright, low-power, low-divergence Gaussian fields in an unbiased self-defocusing photorefractive BaTiO3 crystal. Optical Engineering, 50(1), pp. 1-3.
Kimlin, Michael, Meltzer, Richard, Taylor, Thomas, & Wilson, Andrew (2005) Techniques for Monitoring and Maintaining the Performance of Brewer MkIV Spectrophotometeers. Optical Engineering, 44(4), 041008-1.
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2Law, Susan H., van Eijkelenborg, Martijn A., Barton, Geoffrey W., Yan, Cheng, Lwin, Richard, & Gan, J. (2006) Cleaved end-face quality of microstructured polymer optical fibres. Optics Communications, 265(2), pp. 513-520.
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10Liu, Cheng, Huang, Zhiwei, Lu, Fake, Zheng, Wei, Hutmacher, Dietmar, & Sheppard, Colin (2007) Near-field effects on coherent anti-Stokes Raman scattering microscopy imaging. Optics Express, 15(7), pp. 4118-4131.
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7Liu, Z., Pile, David F. P., Luo, Q., Fang, N., & Zhang, X. (2007) Enhanced backward scattering by surface plasmons on silver film. Applied Physics A: Materials Science & Processing, 87(2), pp. 157-160.
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1Mathur, Ankit, Atchison, David A., & Scott, Dion H. (2008) Ocular aberrations in the peripheral visual field. Optics Letters, 33(8), pp. 863-865.
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26Oulton, Rupert F., Pile, David F. P., Liu, Yongmin, & Zhang, Xiang (2007) Scattering of Surface Plasmon Polaritons at Abrupt Surface Discontinuities: Implications for Nano-Scale Cavities. Physical Review B (Condensed Matter and Materials Physics), 76, 035408.
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36Pile, David F. & Gramotnev, Dmitri K. (2006) Adiabatic and non-adiabatic nano-focusing of plasmons by tapered gap plasmon waveguides. Applied Physics Letters, 89(-), 041111.
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60Pile, David F. & Gramotnev, Dmitri K. (2006) Numerical analysis of coupled wedge plasmons in a structure of two metal wedges separated by a gap. Journal of Applied Physics, 100, 013101.
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27Pile, David F. P. (2005) Compact-2D FDTD for waveguides including materials with negative dielectric permittivity, magnetic permeability and refractive index. Applied Physics B: Lasers and Optics, 81(5), pp. 607-613.
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19Pile, David F. P. (2005) Gap modes of one-dimensional photonic crystal surface waves. Applied Optics, 44(20), pp. 4398-4401.
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1Pile, David F. P. & Gramotnev, Dmitri K. (2004) Channel plasmon-polariton in a triangular groove on a metal surface. Optics Letters, 29(10), pp. 1069-1071.
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171Pile, David F. P. & Gramotnev, Dmitri K. (2005) Nanoscale Fabry-Perot interferometer using channel plasmon-polaritons in triangular metallic grooves. Applied Physics Letters, 86(16), p. 161101.
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31Pile, David F. P. & Gramotnev, Dmitri K. (2005) Plasmonic subwavelength waveguides: next to zero losses at sharp bends. Optics Letters, 30(10), pp. 1186-1188.
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88Pile, David F. P., Gramotnev, Dmitri K., Oulton, Rupert F., & Zhang, Xiang (2007) On long-range plasmonic modes in metallic gaps. Optics Express, 15(21), pp. 13669-13674.
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15Pile, David F. P., Ogawa, Takeshi, Gramotnev, Dmitri K., Okamoto, Takeshi, Haraguchi, Masanobu, Fukui, Masuo, et al. (2005) Theoretical and experimental investigation of strongly localized plasmons on triangular metal wedges for sub-wavelength waveguiding. Applied Physics Letters, 87(6), 061106.
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125Pile, David F.P., Ogawa, Takeshi, Gramotnev, Dmitri K., Matsuzaki, Y., Vernon, Kristy C., Yamaguchi, K., et al. (2005) Two-dimensionally localized modes of a nano-scale gap plasmon waveguide. Applied Physics Letters, 87(26), p. 261114.
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121Vogel, Michael W. & Gramotnev, Dmitri K. (2007) Adiabatic nano-focusing of plasmons by metallic tapered rods in the presence of dissipation. Physics Letters. Section A: General, Atomic and Solid State Physics, 363(5-6), pp. 507-511.
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19Wang, Sheng, Pile, David F. P., Sung, Cheng, & Zhang, Xiang (2007) Nano-pin plasmonic resonator array and its optical properties. Nano Letters, 7(4), pp. 1076-1080.
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43Conference Paper
Cletus, Biju, Olds, William J., Izake, Emad L., Fredericks, Peter M., & Jaatinen, Esa (2011) Concealed substance identification using a defocused inverse spatially offset Raman spectrometer. In Baldwin, Ken (Ed.) International Quantum Electronics Conference and Conference on Lasers and Electro-Optics, Pacific Rim, 28 August - 1 September 2011, Sydney Convention & Exhibition Centre, Sydney, NSW.
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52Coyne, Steven, Isoardi, Gillian, Hirning, Michael, & Luther, Mark (2008) The use of high dynamic range luminance mapping in the assessment, understanding and defining of visual issues in post occupancy building assessment. In Benke, G (Ed.) Proceedings of the IEECB Focus 2008, European Commission, Frankfurt am Main, Germany, pp. 1-9.
Garcia-Hansen, Veronica Ruth, Cowley, Michael, Smith, Simon S., & Isoardi, Gillian (2013) Testing the accuracy of luminance maps acquired by smart phone cameras. In Proceedings of the CIE Centenary Conference "Towards a New Century of Light", Commission Internationale l'Eclairage, Paris, pp. 951-955.
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27Liu, Yongmin, Pile, David F., Liu, Zhaowei, Wu, Dongmin, Sun, Cheng, & Zhang, Xiang (2006) Negative group velocity of surface plasmons on thin metallic films. In The International Society for Optical Engineering (SPIE) 2006: Plasmonics: Metallic Nanostructures and their Optical Properties IV, The International Society for Optical Engineering (SPIE), 63231M.
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