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Articles

A Near and Far-Field Projection Algorithm for Finite-Difference Time-Domain Codes

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Pages 5-18 | Published online: 03 Apr 2012

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P.C. Subedi & I. Chatterjee. (1996) Inclusion detection analysis in rectangular dielectric structures using the finite-difference time-domain technique. Journal of Electromagnetic Waves and Applications 10:6, pages 845-870.
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Tevfik Bulent Kanmaz, Efe Ozturk, Hilmi Volkan Demir & Cigdem Gunduz-Demir. (2023) Deep-learning-enabled electromagnetic near-field prediction and inverse design of metasurfaces. Optica 10:10, pages 1373.
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Sebastian Franke, Marten Richter, Juanjuan Ren, Andreas Knorr & Stephen Hughes. (2020) Quantized quasinormal-mode description of nonlinear cavity-QED effects from coupled resonators with a Fano-like resonance. Physical Review Research 2:3.
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Sebastian Franke, Juanjuan Ren, Stephen Hughes & Marten Richter. (2020) Fluctuation-dissipation theorem and fundamental photon commutation relations in lossy nanostructures using quasinormal modes. Physical Review Research 2:3.
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Damian Michalik, Tomasz Stefaniuk, Rafał Kasztelanic & Ryszard Buczyński. (2020) Polarization-maintaining optical fiber with an anisotropic core compatible with the SMF-28 standard. Journal of the Optical Society of America B 37:6, pages 1722.
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Juanjuan Ren, Sebastian Franke, Andreas Knorr, Marten Richter & Stephen Hughes. (2020) Near-field to far-field transformations of optical quasinormal modes and efficient calculation of quantized quasinormal modes for open cavities and plasmonic resonators. Physical Review B 101:20.
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C. Liu, C.F. Chan & H.C. Ong. (2016) Direct deconvolution of electric and magnetic responses of single nanoparticles by Fourier space surface plasmon resonance microscopy. Optics Communications 378, pages 28-34.
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Bernhard J. Bohn, Martin Schnell, Mikhail A. Kats, Francesco Aieta, Rainer Hillenbrand & Federico Capasso. (2015) Near-Field Imaging of Phased Array Metasurfaces. Nano Letters 15:6, pages 3851-3858.
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Glaucio L. Ramos & Cássio G. Rego. (2014) Characterization of the radiation pattern of antennas via FDTD and time-domain moment expansion. Journal of Microwaves, Optoelectronics and Electromagnetic Applications 13:1, pages 67-84.
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Glaucio L. Ramos, Cássio G. Rego & Alexandre R. Fonseca. (2013) Characterization of the radiation pattern of antennas using time-domain spherical-multipole and moment expansion. Journal of Microwaves, Optoelectronics and Electromagnetic Applications 12:2, pages 533-546.
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Z. L. Cao & H. C. Ong. (2013) Determination of coupling rate of light emitter to surface plasmon polaritons supported on nanohole array. Applied Physics Letters 102:24.
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J. Francés, C. Neipp, M. Pérez-Molina & A. Beléndez. (2010) Rigorous interference and diffraction analysis of diffractive optic elements using the finite-difference time-domain method. Computer Physics Communications 181:12, pages 1963-1973.
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Dirk J. Robinson & John B. Schneider. (2007) On the Use of the Geometric Mean in FDTD Near-to-Far-Field Transformations. IEEE Transactions on Antennas and Propagation 55:11, pages 3204-3211.
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C.-C. Oetting & L. Klinkenbusch. (2005) Near-to-far-field transformation by a time-domain spherical-multipole analysis. IEEE Transactions on Antennas and Propagation 53:6, pages 2054-2063.
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T. Kasuga & H. Inoue. (2005) Novel FDTD Simulation Method Using Multiple-Analysis-Space for Electromagnetic Far Field. IEEE Transactions on Electromagnetic Compatibility 47:2, pages 274-280.
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D.C. Wittwer & R.W. Ziolkowski. (2001) The effect of dielectric loss in FDTD simulations of microstrip structures. IEEE Transactions on Microwave Theory and Techniques 49:2, pages 250-262.
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Bruce Archambeault, Colin Brench & Omar M. RamahiBruce Archambeault, Colin Brench & Omar M. Ramahi. 2001. EMI/EMC Computational Modeling Handbook. EMI/EMC Computational Modeling Handbook 35 70 .
S. Gonz�lez Garc�a, B. Garc�a Olmedo & R. G�mez Mart�n. (2000) A time-domain near- to far-field transformation for FDTD in two dimensions. Microwave and Optical Technology Letters 27:6, pages 427-432.
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T. Martin. (1998) An improved near- to far-zone transformation for the finite-difference time-domain method. IEEE Transactions on Antennas and Propagation 46:9, pages 1263-1271.
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Bruce Archambeault, Omar M. Ramahi & Colin BrenchBruce Archambeault, Omar M. Ramahi & Colin Brench. 1998. EMI/EMC Computational Modeling Handbook. EMI/EMC Computational Modeling Handbook 35 67 .
Richard W. Ziolkowski. (1997) Realization of an all-optical triode and diode with a two-level-atom–loaded diffraction grating. Applied Optics 36:33, pages 8547.
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O.M. Ramahi. (1997) Near- and far-field calculations in FDTD simulations using Kirchhoff surface integral representation. IEEE Transactions on Antennas and Propagation 45:5, pages 753-759.
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M. Kragalott, M.S. Kluskens & W.P. Pala. (1997) Time-domain fields exterior to a two-dimensional FDTD space. IEEE Transactions on Antennas and Propagation 45:11, pages 1655-1663.
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Justin B. Judkins & Richard W. Ziolkowski. (1995) Finite-difference time-domain modeling of nonperfectly conducting metallic thin-film gratings. Journal of the Optical Society of America A 12:9, pages 1974.
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K.L. Shlager & J.B. Schneider. (1995) A selective survey of the finite-difference time-domain literature. IEEE Antennas and Propagation Magazine 37:4, pages 39-57.
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Richard W. Ziolkowski & Justin B. Judkins. (1994) Nonlinear finite-difference time-domain modeling of linear and nonlinear corrugated waveguides. Journal of the Optical Society of America B 11:9, pages 1565.
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Sailing He. (1992) A time-harmonic Green’s function technique and wave propagation in a stratified nonreciprocal chiral slab with multiple discontinuities. Journal of Mathematical Physics 33:12, pages 4103-4110.
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S.T. Pennock & S.L. Ray. (1992) RCS modeling with the TSAR FDTD code. RCS modeling with the TSAR FDTD code.

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