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1
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0024138196
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Review of the formulation and applications of the finite-difference time-domain method for numerical modeling of electromagnetic wave interactions with arbitrary structures
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Dec.
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A. Taflove, “Review of the formulation and applications of the finite-difference time-domain method for numerical modeling of electromagnetic wave interactions with arbitrary structures,” Wave Motion, vol. 10, pp. 547–582, Dec. 1988.
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Wave Motion
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Taflove, A.1
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2
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0025471155
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A frequency-dependent finite-difference time-domain formulation for dispersive materials
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Aug.
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R. Luebbers, F. Hunsberger, K. Kunz, R. Standler, and M. Schneider, “A frequency-dependent finite-difference time-domain formulation for dispersive materials,” IEEE Trans. Electromagnet. Compat., vol. 32, pp. 222–227, Aug. 1990.
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IEEE Trans. Electromagnet. Compat.
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Luebbers, R.1
Hunsberger, F.2
Kunz, K.3
Standler, R.4
Schneider, M.5
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3
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0026021601
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A frequency-dependent finite-difference time-domain formulation for transient propagation in plasma
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Jan.
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R. Luebbers, F. Hunsburger, and K. Kunz, “A frequency-dependent finite-difference time-domain formulation for transient propagation in plasma,” IEEE Trans. Antennas Propagat., vol. 39, pp. 29–34, Jan. 1991.
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IEEE Trans. Antennas Propagat.
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Luebbers, R.1
Hunsburger, F.2
Kunz, K.3
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4
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84936899750
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A simple convolution procedure for calculating currents induced in the human body for exposue to EMP
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Salt Lake City, UT, June 23–27
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J. Y. Chen and O. P. Gandhi, “A simple convolution procedure for calculating currents induced in the human body for exposue to EMP,” in Proc. Thirteenth Annual Meeting of the Bioelectromagnetics Society, Salt Lake City, UT, June 23–27, 1991.
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(1991)
Proc. Thirteenth Annual Meeting of the Bioelectromagnetics Society
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Chen, J.Y.1
Gandhi, O.P.2
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5
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0026187744
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Propagation of transients in dispersive dielectric media
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July
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M. D. Bui, S. S. Stuchly, and G. I. Costache, “Propagation of transients in dispersive dielectric media,” IEEE Trans. Microwave Theory Tech., vol. 39, pp. 1165–1172, July 1991.
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IEEE Trans. Microwave Theory Tech.
, vol.39
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Bui, M.D.1
Stuchly, S.S.2
Costache, G.I.3
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6
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0026837679
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A frequency dependant FDTD method for biological applications
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Mar.
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D. M. Sullivan, “A frequency dependant FDTD method for biological applications,” IEEE Trans. Microwave Theory Tech., vol. 40, pp. 532–539, Mar. 1992.
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IEEE Trans. Microwave Theory Tech.
, vol.40
, pp. 532-539
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Sullivan, D.M.1
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8
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0027578887
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A frequency-dependent finite-difference time-domain formulation for general dispersive media
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Apr.
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O. P. Gandhi, B. Q. Gao, and J. Y. Chen, “A frequency-dependent finite-difference time-domain formulation for general dispersive media,” IEEE Trans. Microwave Theory Tech., vol. 41, pp. 658–665, Apr. 1993.
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Gandhi, O.P.1
Gao, B.Q.2
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9
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0027701375
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Lossy dielectrics in FDTD
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Nov.
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R. Luebbers, “Lossy dielectrics in FDTD,” IEEE Trans. Antennas Propagat., vol. 41, pp. 1586–1588, Nov. 1993.
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IEEE Trans. Antennas Propagat.
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, pp. 1586-1588
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Luebbers, R.1
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10
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12344253577
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Direct time integration of Maxwell's equations in linear dispersive media with absorption of scattering and propagation of femtosecond electromagnetic pulses
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R. M. Joseph, S. C. Hagness, and A. Taflove, “Direct time integration of Maxwell's equations in linear dispersive media with absorption of scattering and propagation of femtosecond electromagnetic pulses,” Opt. Lett., vol. 17, pp. 1412–1414, 1991.
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Opt. Lett.
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Joseph, R.M.1
Hagness, S.C.2
Taflove, A.3
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11
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84975583130
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Direct time integration of Maxwell's equations in nonlinear dispersive media for propagation and scattering of femtosecond electromagnetic solitons
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P. M. Goorjian and A. Taflove, “Direct time integration of Maxwell's equations in nonlinear dispersive media for propagation and scattering of femtosecond electromagnetic solitons,” Opt. Lett., vol. 17, pp. 180–182, 1992.
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Opt. Lett.
, vol.17
, pp. 180-182
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Goorjian, P.M.1
Taflove, A.2
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12
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0026940309
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Computational modeling of femtosecond optical solitons from Maxwell's equations
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P. M. Goorjian, A. Taflove, R. M. Joseph, and S. C. Hagness, “Computational modeling of femtosecond optical solitons from Maxwell's equations,” IEEE J. Quantum Electron., vol. 28, pp. 2416–2422, 1992.
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IEEE J. Quantum Electron.
, vol.28
, pp. 2416-2422
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Goorjian, P.M.1
Taflove, A.2
Joseph, R.M.3
Hagness, S.C.4
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13
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0027573316
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Direct time integration of Maxwell's equations in two-dimensional dielectric waveguides for propagation and scattering of femtosecond electromagnetic solitons
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R. M Joseph, P. M. Goorjian, and A. Taflove, “Direct time integration of Maxwell's equations in two-dimensional dielectric waveguides for propagation and scattering of femtosecond electromagnetic solitons,” Opt. Lett., vol. 18, pp. 491–493, 1993.
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Opt. Lett.
, vol.18
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Joseph, R.M.1
Goorjian, P.M.2
Taflove, A.3
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14
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84941534720
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A frequency-dependent FDTD method using Z transforms
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Oct.
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D. M. Sullivan, “A frequency-dependent FDTD method using Z transforms,” IEEE Trans. Antennas Propagat., vol. 40, pp. 1223–1230, Oct. 1992.
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IEEE Trans. Antennas Propagat.
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, pp. 1223-1230
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Sullivan, D.M.1
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15
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0025464150
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Improvements to the finite-difference time-domain method for calculating the radar cross section of a perfectly conducting target
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July
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C. M. Furse, S. P. Mathur, and O. P. Gandhi, “Improvements to the finite-difference time-domain method for calculating the radar cross section of a perfectly conducting target,” IEEE Trans. Microwave Theory Tech., vol. 38, pp. 919–927, July 1990.
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Furse, C.M.1
Mathur, S.P.2
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16
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0026153962
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Mathematical methods for treatment planning in deep regional hyperthermia
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May
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D. M. Sullivan, “Mathematical methods for treatment planning in deep regional hyperthermia,” IEEE Trans. Microwave Theory Tech., vol. 39, pp. 864–872, May 1991.
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IEEE Trans. Microwave Theory Tech.
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Sullivan, D.M.1
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