Depolarization of the electromagnetic field in a locally inhomogeneous earth-ionosphere waveguide

This paper presents a further development of the numerical-analytical method for the solution of three-dimensional problems in the theory of radio wave propagation. We consider a vector problem of the electromagnetic field of a vertical electric dipole in a plane Earth-ionosphere waveguide with a lo...

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Published inRadiophysics and quantum electronics Vol. 43; no. 7; pp. 557 - 568
Main Author Soloviev, O V
Format Journal Article
LanguageEnglish
Published New York Springer Nature B.V 01.07.2000
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Abstract This paper presents a further development of the numerical-analytical method for the solution of three-dimensional problems in the theory of radio wave propagation. We consider a vector problem of the electromagnetic field of a vertical electric dipole in a plane Earth-ionosphere waveguide with a local large-scale irregularity on the anisotropic ionosphere wall. The possibility of lowering (elevating) of the local region of the upper waveguide wall with respect to the regular ionosphere level is taken into account. The field components on the boundary surfaces obey the Leontovich impedance conditions. The problem is reduced to a system of two-dimensional integral equations taking into account the overexcitation and depolarization of the field scattered by the irregularity. Using asymptotic (with respect to the parameter kr 1) integration along the direction perpendicular to the ray path, we transform this system to a system of one-dimensional integral equations. The system is solved numerically in the diagonal approximation, combining direct inversion of the Volterra integral operator and the subsequent iterations. The proposed method reduces the computer time required for solving the problem and is useful for the study of both small-scale and large-scale irregularities. We obtained estimates of the TE field components that are not excited by the source considered and originate entirely from field scattering by a three-dimensional irregularity disturbing the geometric regularity of the ionospheric waveguide wall.[PUBLICATION ABSTRACT]
AbstractList This paper presents a further development of the numerical-analytical method for the solution of three-dimensional problems in the theory of radio wave propagation. We consider a vector problem of the electromagnetic field of a vertical electric dipole in a plane Earth-ionosphere waveguide with a local large-scale irregularity on the anisotropic ionosphere wall. The possibility of lowering (elevating) of the local region of the upper waveguide wall with respect to the regular ionosphere level is taken into account. The field components on the boundary surfaces obey the Leontovich impedance conditions. The problem is reduced to a system of two-dimensional integral equations taking into account the overexcitation and depolarization of the field scattered by the irregularity. Using asymptotic (with respect to the parameter kr 1) integration along the direction perpendicular to the ray path, we transform this system to a system of one-dimensional integral equations. The system is solved numerically in the diagonal approximation, combining direct inversion of the Volterra integral operator and the subsequent iterations. The proposed method reduces the computer time required for solving the problem and is useful for the study of both small-scale and large-scale irregularities. We obtained estimates of the TE field components that are not excited by the source considered and originate entirely from field scattering by a three-dimensional irregularity disturbing the geometric regularity of the ionospheric waveguide wall.
This paper presents a further development of the numerical-analytical method for the solution of three-dimensional problems in the theory of radio wave propagation. We consider a vector problem of the electromagnetic field of a vertical electric dipole in a plane Earth-ionosphere waveguide with a local large-scale irregularity on the anisotropic ionosphere wall. The possibility of lowering (elevating) of the local region of the upper waveguide wall with respect to the regular ionosphere level is taken into account. The field components on the boundary surfaces obey the Leontovich impedance conditions. The problem is reduced to a system of two-dimensional integral equations taking into account the overexcitation and depolarization of the field scattered by the irregularity. Using asymptotic (with respect to the parameter kr 1) integration along the direction perpendicular to the ray path, we transform this system to a system of one-dimensional integral equations. The system is solved numerically in the diagonal approximation, combining direct inversion of the Volterra integral operator and the subsequent iterations. The proposed method reduces the computer time required for solving the problem and is useful for the study of both small-scale and large-scale irregularities. We obtained estimates of the TE field components that are not excited by the source considered and originate entirely from field scattering by a three-dimensional irregularity disturbing the geometric regularity of the ionospheric waveguide wall.[PUBLICATION ABSTRACT]
Author Soloviev, O V
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Cites_doi 10.1029/1998GL900007
10.1029/96RS02989
10.1016/S1364-6826(96)00048-X
10.1029/1999RS900061
10.1016/S1364-6826(98)00088-1
10.1016/S1364-6826(98)00038-8
10.1029/1999RS900051
10.1029/1999RS900040
10.1029/96RS02919
10.1029/1999JA900108
10.1029/98JA00999
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References O. V. Soloviev (BF02677087_CR1) 1999; 42
M. A. Clilverd (BF02677087_CR15) 1999; 104
K. Baba (BF02677087_CR13) 1998; 25
O. V. Soloviev (BF02677087_CR23) 1995; 38
O. V. Soloviev (BF02677087_CR19) 1990; 33
N. F. Blagoveschenskaya (BF02677087_CR5) 1990; 30
BF02677087_CR17
O. V. Soloviev (BF02677087_CR2) 1997; 32
C. J. Rodger (BF02677087_CR4) 1999; 34
O. V. Solovier (BF02677087_CR16) 1985; 28
D. Nunn (BF02677087_CR14) 1998; 60
C. J. Rodger (BF02677087_CR11) 1999; 34
BF02677087_CR24
J. A. Stratton (BF02677087_CR20) 1948
O. A. Molchanov (BF02677087_CR3) 1998; 103
C. J. Rodger (BF02677087_CR8) 1998; 60
A. B. Pashin (BF02677087_CR7) 1995; 57
O. V. Soloviev (BF02677087_CR21) 1995; 38
C. J. Rodger (BF02677087_CR10) 1999; 34
D. Nunn (BF02677087_CR12) 1997; 59
O. V. Soloviev (BF02677087_CR22) 1991; 34
C. J. Rodger (BF02677087_CR9) 1998; 60
O. V. Soloviev (BF02677087_CR18) 1988; 31
T. J. Fitzgerald (BF02677087_CR6) 1997; 32
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Snippet This paper presents a further development of the numerical-analytical method for the solution of three-dimensional problems in the theory of radio wave...
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SubjectTerms Depolarization
Earth
Earth-ionosphere waveguide
Electromagnetism
Integral equations
Ionosphere
Irregularities
Mathematical analysis
Mathematical models
Three dimensional
Walls
Waveguides
Title Depolarization of the electromagnetic field in a locally inhomogeneous earth-ionosphere waveguide
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