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Results: 1-25 | 26-50 | 51-75 | 76-92
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Authors: Mackay, TG Lakhtakia, A Weiglhofer, WS
Citation: Tg. Mackay et al., Ellipsoidal topology, orientation diversity and correlation length in bianisotropic composite mediums, AEU-INT J E, 55(4), 2001, pp. 243-251

Authors: Slepyan, GY Krapivin, NA Maksimenko, SA Lakhtakia, A Yevtushenko, OM
Citation: Gy. Slepyan et al., Scattering of electromagnetic waves by a semi-infinite carbon nanotube, AEU-INT J E, 55(4), 2001, pp. 273-280

Authors: Ertekin, E Lakhtakia, A
Citation: E. Ertekin et A. Lakhtakia, Optical interconnects realizable with thin-film helicoidal bianisotropic mediums, P ROY SOC A, 457(2008), 2001, pp. 817-836

Authors: Lakhtakia, A
Citation: A. Lakhtakia, A note on the first-order Born approximation for scattering by defects in crystals (vol 68, pg 1, 1993), PHIL MAG B, 81(1), 2001, pp. 117-117

Authors: Geddes, JB Lakhtakia, A
Citation: Jb. Geddes et A. Lakhtakia, Time-domain simulation of the circular Bragg phenomenon exhibited by axially excited chiral sculptured thin films (vol 14, pg 97, 2001), EPJ-APPL PH, 16(3), 2001, pp. NIL_1-NIL_1

Authors: Geddes, JB Lakhtakia, A
Citation: Jb. Geddes et A. Lakhtakia, Reflection and transmission of optical narrow-extent pulses by axially excited chiral sculptured thin films (vol 13, pg 3, 2001), EPJ-APPL PH, 16(3), 2001, pp. 247-247

Authors: Geddes, JB Lakhtakia, A
Citation: Jb. Geddes et A. Lakhtakia, Time-domain simulation of the circular Bragg phenomenon exhibited by axially excited chiral sculptured thin films, EPJ-APPL PH, 14(2), 2001, pp. 97-105

Authors: Geddes, JB Lakhtakia, A
Citation: Jb. Geddes et A. Lakhtakia, Reflection and transmission of optical narrow-extent pulses by axially excited chiral sculptured thin films, EPJ-APPL PH, 13(1), 2001, pp. 3-14

Authors: Mackay, TG Lakhtakia, A Weiglhofer, WS
Citation: Tg. Mackay et al., Strong-property-fluctuation theory for homogenization of bianisotropic composites: Formulation - art. no. 049901 (vol E62, pg 6052, 2000), PHYS REV E, 6304(4), 2001, pp. 9901-9901

Authors: McCall, MW Lakhtakia, A
Citation: Mw. Mccall et A. Lakhtakia, Development and assessment of coupled wave theory of axial propagation in thin-film helicoidal bi-anisotropic media. Part 2: Dichroisms, ellipticity transformation and optical rotation, J MOD OPT, 48(1), 2001, pp. 143-158

Authors: Lakhtakia, A Weiglhofer, WS
Citation: A. Lakhtakia et Ws. Weiglhofer, Further comments on "returning to the post constraints", MICROW OPT, 31(5), 2001, pp. 402-402

Authors: Lakhtakia, A
Citation: A. Lakhtakia, Beltrami field phasors are eigenvectors of 6 x 6 linear constitutive dyadics, MICROW OPT, 30(2), 2001, pp. 127-128

Authors: Lakhtakia, A Weigihofer, WS
Citation: A. Lakhtakia et Ws. Weigihofer, Comments on "returning to the post constraints", MICROW OPT, 29(5), 2001, pp. 363-363

Authors: Lakhtakia, A
Citation: A. Lakhtakia, A representation theorem involving fractional derivatives for linear homogeneous chiral media, MICROW OPT, 28(6), 2001, pp. 385-386

Authors: Lakhtakia, A
Citation: A. Lakhtakia, Stepwise chirping of chiral sculptured thin films for Bragg bandwidth enhancement, MICROW OPT, 28(5), 2001, pp. 323-326

Authors: Slepyan, GY Maksimenko, SA Lakhtakia, A Yevtushenko, OM
Citation: Gy. Slepyan et al., Electromagnetic response of carbon nanotubes and nanotube ropes, SYNTH METAL, 124(1), 2001, pp. 121-123

Authors: Lakhtakia, A Weiglhofer, WS
Citation: A. Lakhtakia et Ws. Weiglhofer, Response to comment on "Electromagnetic waves in a material with simultaneous mirror-conjugated and racemic chirality characteristics'', ELECTROMAGN, 21(6), 2001, pp. 509-511

Authors: Lakhtakia, MN Lakhtakia, A
Citation: Mn. Lakhtakia et A. Lakhtakia, Anisotropic composite materials with intensity-dependent permittivity tensor: The Bruggeman approach, ELECTROMAGN, 21(2), 2001, pp. 129-137

Authors: Michel, B Lakhtakia, A Weiglhofer, WS Mackay, TG
Citation: B. Michel et al., Incremental and differential Maxwell Garnett formalisms for bi-anisotropiccomposites, COMP SCI T, 61(1), 2001, pp. 13-18

Authors: Lakhtakia, A Slepyan, GY Maksimenko, SA
Citation: A. Lakhtakia et al., Towards cholesteric absorbers for microwave frequencies, INT J INFRA, 22(7), 2001, pp. 999-1007

Authors: Weiglhofer, WS Lakhtakia, A
Citation: Ws. Weiglhofer et A. Lakhtakia, Comment on "Rigorous solution for transient propagation of electromagneticwaves through a medium: causality plus diffraction in time", OPTICS LETT, 26(16), 2001, pp. 1218-1219

Authors: Lakhtakia, A
Citation: A. Lakhtakia, Enhancement of optical activity of chiral sculptured thin films by suitable infiltration of void regions, OPTIK, 112(4), 2001, pp. 145-148

Authors: Lakhtakia, A
Citation: A. Lakhtakia, Axial excitation of tightly interlaced chiral sculptured thin films: "averaged" circular Bragg phenomenon, OPTIK, 112(3), 2001, pp. 119-124

Authors: Geddes, JB Lakhtakia, A
Citation: Jb. Geddes et A. Lakhtakia, Time-domain signature of an axially excited cholesteric liquid crystal. Part II: Rectangular wide-extent pulses, OPTIK, 112(2), 2001, pp. 62-66

Authors: Mackay, TG Lakhtakia, A Weiglhofer, WS
Citation: Tg. Mackay et al., Homogenisation of similarly oriented, metallic, ellipsoidal inclusions using the bilocally approximated strong-property-fluctuation theory, OPT COMMUN, 197(1-3), 2001, pp. 89-95
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