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  1. Journal of Communications Technology and Electronics
  2. Journal of Communications Technology and Electronics : Volume 57
  3. Journal of Communications Technology and Electronics : Volume 57, Issue 4, April 2012
  4. Transparent antennas
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Journal of Communications Technology and Electronics : Volume 62
Journal of Communications Technology and Electronics : Volume 61
Journal of Communications Technology and Electronics : Volume 60
Journal of Communications Technology and Electronics : Volume 59
Journal of Communications Technology and Electronics : Volume 58
Journal of Communications Technology and Electronics : Volume 57
Journal of Communications Technology and Electronics : Volume 57, Issue 12, December 2012
Journal of Communications Technology and Electronics : Volume 57, Issue 11, November 2012
Journal of Communications Technology and Electronics : Volume 57, Issue 10, October 2012
Journal of Communications Technology and Electronics : Volume 57, Issue 9, September 2012
Journal of Communications Technology and Electronics : Volume 57, Issue 8, August 2012
Journal of Communications Technology and Electronics : Volume 57, Issue 7, July 2012
Journal of Communications Technology and Electronics : Volume 57, Issue 6, June 2012
Journal of Communications Technology and Electronics : Volume 57, Issue 5, May 2012
Journal of Communications Technology and Electronics : Volume 57, Issue 4, April 2012
The electrostatic approximation in the problem of diffraction of a plane wave by a group of coaxial small scatterers
Propagation of TM modes in a circular dielectric waveguide filled with a medium with Kerr nonlinearity
Excitation of an electrically thick metamaterial waveguide of a finite length
Sommerfeld wave (E $_{00}$ wave) propagating along the cylindrical conductor with a large radius
Matching the input impedance of a short monopole to the wave impedance of the feeder with the use of an L-network consisting of finite-Q inductances
Diffraction by a cylinder with a dielectric shell. Surface waves and an antiradar coating
Transparent antennas
Time-domain analysis of nonlinear circuits performed on the basis of functional Volterra series
Compensation of the phase flicker noise in a bipolar-transistor power amplifier
Influence of the magnetoelastic effect on the microwave magnetic properties of Fe-N thin films
Excitation of a system of electromagnetic oscillators in the field of a remote microwave radiation source. Part 1. High-Q systems
Acceleration of heavy ions in a thruster
Secondary-emission properties of the 2D-ordered linear chain carbon films
On the calculation of the Morlet wavelet used for the analysis of the dynamics of electroencephalogram signal responses
Nature and spatial localization of electroluminescence sources in the metal-composite layer-semiconductor structures
Analysis of the line broadening of diode-pumped solid-state lasers
Electric instability in multibarrier heterostructures: Features of the RF impedance
3D refractograms and their application in diagnostics of gradient inhomogeneities
Journal of Communications Technology and Electronics : Volume 57, Issue 3, March 2012
Journal of Communications Technology and Electronics : Volume 57, Issue 2, February 2012
Journal of Communications Technology and Electronics : Volume 57, Issue 1, January 2012
Journal of Communications Technology and Electronics : Volume 56
Journal of Communications Technology and Electronics : Volume 55
Journal of Communications Technology and Electronics : Volume 54
Journal of Communications Technology and Electronics : Volume 53
Journal of Communications Technology and Electronics : Volume 52
Journal of Communications Technology and Electronics : Volume 51

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Transparent antennas

Content Provider Springer Nature Link
Author Levin, B. M.
Copyright Year 2012
Abstract The method for calculating parameters of transparent metal films is improved. An equation for the current flowing along a transparent radiator is derived and solved. The current distribution along the radiator’s axis is analyzed on the basis of a solution to this equation. It is shown that, depending on parameters, transparent materials fall into two groups with two different types of the current distribution. Antenna variants are calculated. A specific model antenna is proposed.
Starting Page 388
Ending Page 392
Page Count 5
File Format PDF
ISSN 10642269
Journal Journal of Communications Technology and Electronics
Volume Number 57
Issue Number 4
e-ISSN 15556557
Language English
Publisher SP MAIK Nauka/Interperiodica
Publisher Date 2012-04-17
Publisher Place Dordrecht
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Communications Engineering, Networks
Content Type Text
Resource Type Article
Subject Electronic, Optical and Magnetic Materials Condensed Matter Physics Electrical and Electronic Engineering Radiation
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