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1
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84939375237
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Detailed FD-TD analysis of electromagnetic fields penetrating narrow slots and lapped joints in thick conducting screens
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A. Taflove, K. R. Umashankar, B. Beker, and F. Harfoush, “Detailed FD-TD analysis of electromagnetic fields penetrating narrow slots and lapped joints in thick conducting screens,” IEEE Trans. Antennas Propagat., to be published.
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IEEE Trans. Antennas Propagat., to be published
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Taflove, A.1
Umashankar, K.R.2
Beker, B.3
Harfoush, F.4
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2
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0016978016
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Electromagnetic excitation of a wire through an aperture-perforated conducting screen
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July
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C. M. Butler and K. R. Umashankar, “Electromagnetic excitation of a wire through an aperture-perforated conducting screen,” IEEE Trans. Antennas Propagat., vol. AP-24, pp. 456–462, July 1976.
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(1976)
IEEE Trans. Antennas Propagat.
, vol.AP-24
, pp. 456-462
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Butler, C.M.1
Umashankar, K.R.2
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3
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4043099381
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Electromagnetic coupling to an infinite cable placed behind a slot-perforated screen
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Aug.
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K. R. Umashankar and J. R. Wait, “Electromagnetic coupling to an infinite cable placed behind a slot-perforated screen,” IEEE Trans. Electromagn. Compat., vol. EMC-20, pp. 406-411, Aug. 1978.
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(1978)
IEEE Trans. Electromagn. Compat.
, vol.EMC-20
, pp. 406-411
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Umashankar, K.R.1
Wait, J.R.2
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4
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0020716843
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Electromagnetic coupling to an infinite wire through a slot in a conducting plane
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Mar.
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Y. Naiheng and R. F. Harrington, “Electromagnetic coupling to an infinite wire through a slot in a conducting plane,” IEEE Trans. Antennas Propagat., vol. AP-31, pp. 310–316, Mar. 1983.
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(1983)
IEEE Trans. Antennas Propagat.
, vol.AP-31
, pp. 310-316
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Naiheng, Y.1
Harrington, R.F.2
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5
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84939396361
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Scattering from a slit cylinder enclosing an off-set impedance cylinder
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Philadelphia, PA, June
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R. W. Ziolkowski and R. F. Schmucker, “Scattering from a slit cylinder enclosing an off-set impedance cylinder,” in Proc. 1986 Nat. Radio Sci. Meet. (URSI), Philadelphia, PA, June 1986, p. 122.
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(1986)
Proc. 1986 Nat. Radio Sci. Meet. (URSI)
, pp. 122.
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Ziolkowski, R.W.1
Schmucker, R.F.2
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6
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0020151808
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A hybrid moment method/finite-difference time-domain approach to electromagnetic coupling and aperture penetration into complex geometries
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July
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A. Taflove and K. R. Umashankar, “A hybrid moment method/finite-difference time-domain approach to electromagnetic coupling and aperture penetration into complex geometries,” IEEE Trans. Antennas Propagat., vol. AP-30, pp. 617–627, July 1982.
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(1982)
IEEE Trans. Antennas Propagat.
, vol.AP-30
, pp. 617-627
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Taflove, A.1
Umashankar, K.R.2
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7
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0019567775
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Finite-difference analysis of EMP coupling to thin struts and wires
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May
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R. Holland and L. Simpson, “Finite-difference analysis of EMP coupling to thin struts and wires,” IEEE Trans. Electromagn. Compat., vol. EMC-23, pp. 88–97, May 1981.
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(1981)
IEEE Trans. Electromagn. Compat.
, vol.EMC-23
, pp. 88-97
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Holland, R.1
Simpson, L.2
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8
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33744975540
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Field equivalence theorems
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June
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S. A. Schelkunoff, “Field equivalence theorems,” Comm. Pure Appl. Math., vol. 4, pp. 43–59, June 1951.
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(1951)
Comm. Pure Appl. Math.
, vol.4
, pp. 43-59
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Schelkunoff, S.A.1
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10
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84939366805
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Equivalent electromagnetic properties of a concentric wire cage as compared to a circular cylinder
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Kirtland AFB, NM, Mar.
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K. R. Umashankar and C. E. Baum, “Equivalent electromagnetic properties of a concentric wire cage as compared to a circular cylinder,” Sensor and Simulation Notes, Note 252, Air Force Weapons Laboratory, Kirtland AFB, NM, Mar. 1979.
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(1979)
Sensor and Simulation Notes, Note 252, Air Force Weapons Laboratory
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Umashankar, K.R.1
Baum, C.E.2
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11
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84915249490
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Theoretical analysis of the wire biconical antenna
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Fort Huachuca, AZ, Tech. Rep. PCN-18-74, Jan.
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C. M. Butler, K. R. Umashankar, and C. E. Smith, “Theoretical analysis of the wire biconical antenna,” U.S. Army Stratcom, Fort Huachuca, AZ, Tech. Rep. PCN-18-74, Jan. 1975.
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(1975)
U.S. Army Stratcom
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Butler, C.M.1
Umashankar, K.R.2
Smith, C.E.3
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12
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84939323281
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Conformal FD-TD modeling of objects with smooth curved surfaces
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Blacksburg, VA, June
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T. G. Jurgens, A. Taflove, and K. R. Umashankar, “Conformal FD-TD modeling of objects with smooth curved surfaces,” in Proc. 1987 Nat. Radio Sci. Meet. (URSI), Blacksburg, VA, June 1987.
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(1987)
Proc. 1987 Nat. Radio Sci. Meet. (URSI)
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Jurgens, T.G.1
Taflove, A.2
Umashankar, K.R.3
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13
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84894021661
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Numerical solution of initial boundary value problems involving Maxwell's equations in isotropic media
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May
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K. S. Yee, “Numerical solution of initial boundary value problems involving Maxwell’s equations in isotropic media,” IEEE Trans. Antennas Propagat., vol. AP-14, pp. 302–307, May 1966.
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(1966)
IEEE Trans. Antennas Propagat.
, vol.AP-14
, pp. 302-307
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Yee, K.S.1
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14
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52249102979
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Phenomenology of microwave coupling, Part I
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Livermore, CA, Rep. UCID-20215, Nov.
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R. J. King, J. K. Breakall, H. G. Hudson, J. J. Morrison, V. G. McGevna, K. S. Kunz, A. P. Ludwigsen, and D. K. Gnade, “Phenomenology of microwave coupling, Part I,” Lawrence Livermore Nat. Lab., Livermore, CA, Rep. UCID-20215, Nov. 1984.
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(1984)
Lawrence Livermore Nat. Lab.
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King, R.J.1
Breakall, J.K.2
Hudson, H.G.3
Morrison, J.J.4
McGevna, V.G.5
Kunz, K.S.6
Ludwigsen, A.P.7
Gnade, D.K.8
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15
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34547637221
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Phenomenology of microwave coupling, Part II
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Livermore, CA, Rep. UCID-20215, Part 2, Aug.
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R. J. King, A. P. Ludwigsen, and K. S. Kunz, “Phenomenology of microwave coupling, Part II,” Lawrence Livermore Nat. Lab., Livermore, CA, Rep. UCID-20215, Part 2, Aug. 1985.
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(1985)
Lawrence Livermore Nat. Lab.
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King, R.J.1
Ludwigsen, A.P.2
Kunz, K.S.3
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