OptiFDTD Publication References – 2009

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Listing of scientific papers, technical journals, periodicals, and conference publications which reference the use of OptiFDTD.

[1] Al-Aakhir A. Rogers, Scott Samson, and Sunny Kedia; Far-field evanescent wave propagation using coupled subwavelength gratings for a MEMS sensor. JOSA A, Vol. 26, Issue 12, pp. 2526-2531.

[2] DeGui Sun, Xiaoqi Li, Dongxia Wong, Yuan Hu, Fangliang Luo, and Trevor J. Hall; Modeling and Numerical Analysis for Silicon-on-Insulator Rib Waveguide Corners. Journal of Lightwave Technology, Vol. 27, Issue 20, pp. 4610-4618.

[3] Sinjeung Park and Jae Won Hahn; Plasmonic data storage medium with metallic nano-aperture array embedded in dielectric material. Optics Express, Vol. 17, Issue 22, pp. 20203-20210

[4] Ahmad Reza Hajiaboli*, 1, Bo Cui2, M. Kahrizi1, and Vo-Van Truong; Optical properties of thick metal nanohole arrays fabricated by electron-beam and nanosphere lithography. Phys. Status Solidi A, 206, No. 5 (2009), pp.976-979.

[5] Chee Leong Tan, Volodymyr V. Lysak, Kamal Alameh and Yong Tak Lee; Absorption enhancement of 980 nm MSM photodetector with a plasmonic grating structure. Optics Communications, December 2009.

[6] Frederik Sulser, Gorazd Poberaj, Manuel Koechlin, and Peter Günter; Photonic crystal structures in ion-sliced lithium niobate thin films. Optics Express, Vol. 17, Issue 22, pp. 20291-20300

[7] Timothy Kehoe, Vincent Reboud and Clivia Sotomayor Torres; Inline metrology configuration for sub-wavelength diffraction using microscope optics. Microelectronic Engineering. Volume 86, Issues 4-6, April-June 2009, Pages 1036-1039.

[8] P. Prabhathan, V. M. Murukeshan, Zhang Jing, and Pamidighantam V. Ramana; Compact SOI nanowire refractive index sensor using phase shifted Bragg grating, Optics Express, Vol. 17, Issue 17, pp. 15330-15341.

[9] P. Prabhathan, V. M. Murukeshan, Zhang Jing, and Pamidighantam V. Ramana; Broadband tunable bandpass filters using phase shifted vertical side wall grating in a submicrometer silicon-on-insulator waveguide. Applied Optics, Vol. 48, Issue 29, pp. 5598-5603.

[10] Ofer Margalit, Vassilios Sarafis, and Zeev Zalevsk; The effect of grana and inter-grana components of chloroplasts on green light transmission: A preliminary study. International Journal for Light and Electron Optics, In Press, Corrected Proof, Available online 28 July 2009.

[11] W. Ding, R. Bachelot, R. Espiau de Lamaestre, D. Macias, A.-L. Baudrion, and P. Royer; Understanding near/far-field engineering of optical dimer antennas through geometry modification. Optics Express, Vol. 17, Issue 23, pp. 21228-21239.

[12] Mohd Hanapiah M. Yusoffa, b, , , H. Abu Hassana, M.R. Hashima and M.K. Abd-Rahman; Analysis of multiple reflections in hybrid photonic crystal multimode interference coupler. Optics Communications. Volume 282, Issue 20, 15 October 2009, Pages 4063-4071.

[13] Aaron F. Matthews; Experimental demonstration of self-collimation beaming and splitting in photonic crystals at microwave frequencies. Optics Communications, Volume 282, Issue 9, 1 May 2009, Pages 1789-1792.

[14] Rahul Dewan, Marko Marinkovic, Rodrigo Noriega, Sujay Phadke, Alberto Salleo, and Dietmar Knipp, Light trapping in thin-film silicon solar cells with submicron surface texture. Optics Express, Vol. 17, Issue 25, pp. 23058-23065.

[15] Junji Ohara, Yukihiro Takeuchi and Kazuo Sato; Improvement of the optical transmittance of a micro prism made from a Si substrate by DRIE, oxidation and SiO2 film refilling J. Micromech. Microeng. 19 No 5 (May 2009) 055019 (8pp)

[16] Ad. Aalim Khan, et. Al. “Simulation Of metallic and Metallic Dielectric Photonic Structure using the OptiFDTD software”, ICPO 2009, International Cofenrence on Optics and Photonics, India,

[17]

Stuart, Elston, “Finite-Difference Time Domain Simulations of metallic Nanoparticles in Whispering Gallery Mode Resonators” , Thesis, Brown Univeristy, May8, 2009

[18] S. Pissadakis, M. Livitziis and G. D. Tsibidis. “Investigations on the Bragg grating recording in all-silica, standard and microstructured optical fibers using 248 nm, 5 ps laser radiation”. Journal of the European optical Society, RP. 4, 2009, 09049 (1-6)