The simple method to prove the uniqueness of the solution of the electromagnetic wave diffraction problems is proposed in the case of loss-free media. The set of the diffraction problems on the thin conducting screens in the wave-guided structures are considered. The over-determined boundary value problem method is used. It is shown that the limited absorption principle is correct for the considered problems. The uniqueness conditions of the solution of the integral equations with difference kernel are obtained as an auxiliary result. These conditions are used to prove the Floquet theorem: the solution of the quasi-periodical wave diffraction on the periodical set of the heterogeneities can be the quasi-periodical wave (Floquet wave) only. ...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...
The simple method to prove the uniqueness of the solution of the electromagnetic wave diffraction pr...
The simple method to prove the uniqueness of the solution of the electromagnetic wave diffraction pr...
The simple method to prove the uniqueness of the solution of the electromagnetic wave diffraction pr...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...
The simple method to prove the uniqueness of the solution of the electromagnetic wave diffraction pr...
The simple method to prove the uniqueness of the solution of the electromagnetic wave diffraction pr...
The simple method to prove the uniqueness of the solution of the electromagnetic wave diffraction pr...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
The universal approach to solving the diffraction problems on the periodical set of heterogeneities ...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...
© 2015 I.E. Pleshchinskaya, N.B. Pleshchinskii and I.V. Sabirov. It has been proved that the electro...