A simple scheme is developed to compute the Green's function of a periodic semiinfinite array in free space. It is based on the spectral representation of the fields radiated by an infinite linear array of dipoles. Results related to successive linear arrays are added in the space domain. This summation can be accelerated tremendously by using an elementary extrapolation technique. The resulting formulation converges everywhere in the plane containing the array, and the number of terms required to achieve a given precision increases slowly away from this plane
This two-part sequence deals with the derivation and physical interpretation of a uniform high-freq...
This paper deals with the spatial domain parametrization and physical interpretation of the asymptot...
This paper deals with the derivation and physical interpretation of a uniform high-frequency represe...
A simple scheme is developed to compute the Green's function of a periodic semiinfinite array in fre...
In this Communication, we provide an efficient algorithm for the evaluation of the semi-infinite arr...
In this Communication, we provide an efficient algorithm for the evaluation of the semi-infinite arr...
The performances of different methods used for the computation of the gradient of the free space Gre...
This paper deals with the construction, physical interpretation and application of a uniform high-fr...
This paper deals with the derivation and physical interpretation of a uniform high-frequency Green's...
This two-part sequence deals with the derivation and physical interpretation of a uniform high-frequ...
This paper deals with the construction, physical interpretation and application of a uniform high-fr...
In this paper, a uniform high frequency formulation of the Green’s Function for an arbitrarily conto...
Abstract. This paper deals with the derivation and physical interpretation of a uniform high-frequen...
High-fequency Green's function for a rectangular array of dipoles with weakly varying tapered excita...
Periodic structures are used widely in electromagnetic devices, including filters, waveguiding struc...
This two-part sequence deals with the derivation and physical interpretation of a uniform high-freq...
This paper deals with the spatial domain parametrization and physical interpretation of the asymptot...
This paper deals with the derivation and physical interpretation of a uniform high-frequency represe...
A simple scheme is developed to compute the Green's function of a periodic semiinfinite array in fre...
In this Communication, we provide an efficient algorithm for the evaluation of the semi-infinite arr...
In this Communication, we provide an efficient algorithm for the evaluation of the semi-infinite arr...
The performances of different methods used for the computation of the gradient of the free space Gre...
This paper deals with the construction, physical interpretation and application of a uniform high-fr...
This paper deals with the derivation and physical interpretation of a uniform high-frequency Green's...
This two-part sequence deals with the derivation and physical interpretation of a uniform high-frequ...
This paper deals with the construction, physical interpretation and application of a uniform high-fr...
In this paper, a uniform high frequency formulation of the Green’s Function for an arbitrarily conto...
Abstract. This paper deals with the derivation and physical interpretation of a uniform high-frequen...
High-fequency Green's function for a rectangular array of dipoles with weakly varying tapered excita...
Periodic structures are used widely in electromagnetic devices, including filters, waveguiding struc...
This two-part sequence deals with the derivation and physical interpretation of a uniform high-freq...
This paper deals with the spatial domain parametrization and physical interpretation of the asymptot...
This paper deals with the derivation and physical interpretation of a uniform high-frequency represe...