This two-part sequence deals with the derivation and physical interpretation of a uniform high-frequency solution for the field radiated at finite distance by a planar semi-infinite phased array of parallel elementary electric dipoles. The field obtained by direct summation over the contributions from the individual radiators is restructured into a double series of wavenumber spectral integrals whose asymptotic reduction yields a series encompassing propagating and evanescent Floquet waves (FW's) together with corresponding diffracted rays, which arise from scattering of the FW at the edge of the array. The formal aspects of the solution are treated in the present paper (Part I). They involve a sequence of manipulations in the complex spect...
Abstract. This paper deals with the derivation and physical interpretation of a uniform high-frequen...
A uniform, high-frequency solution is presented for the electromagnetic field radiated at finite dis...
A uniform, high-frequency solution is presented for the electromagnetic field radiated at finite dis...
This two-part sequence deals with the derivation and physical interpretation of a uniform high-frequ...
This two-part sequence deals with the derivation and physical interpretation of a uniform high-freq...
Abstract—This two-part sequence deals with the derivation and physical interpretation of a uniform h...
This second part of a two-paper sequence deals with the physical interpretation of the rigorously de...
This paper deals with the derivation and physical interpretation of a uniform high-frequency Green's...
The field radiated by a rectangular periodic array of dipoles (the Array Green's function) with weak...
In this paper, we extend a previous prototype study [1] of frequency-domain (FD) and time-domain (TD...
This paper deals with the derivation and physical interpretation of a uniform high frequency represe...
In order to understand and quantify the high-frequency wave processes associated with Floquet wave (...
This paper deals with the construction, physical interpretation and application of a uniform high-fr...
A truncated Floquet wave (TFW) formulation has been presented previously for the potential of a righ...
Green's functions based on truncated periodicity play an important role in the efficient analysis of...
Abstract. This paper deals with the derivation and physical interpretation of a uniform high-frequen...
A uniform, high-frequency solution is presented for the electromagnetic field radiated at finite dis...
A uniform, high-frequency solution is presented for the electromagnetic field radiated at finite dis...
This two-part sequence deals with the derivation and physical interpretation of a uniform high-frequ...
This two-part sequence deals with the derivation and physical interpretation of a uniform high-freq...
Abstract—This two-part sequence deals with the derivation and physical interpretation of a uniform h...
This second part of a two-paper sequence deals with the physical interpretation of the rigorously de...
This paper deals with the derivation and physical interpretation of a uniform high-frequency Green's...
The field radiated by a rectangular periodic array of dipoles (the Array Green's function) with weak...
In this paper, we extend a previous prototype study [1] of frequency-domain (FD) and time-domain (TD...
This paper deals with the derivation and physical interpretation of a uniform high frequency represe...
In order to understand and quantify the high-frequency wave processes associated with Floquet wave (...
This paper deals with the construction, physical interpretation and application of a uniform high-fr...
A truncated Floquet wave (TFW) formulation has been presented previously for the potential of a righ...
Green's functions based on truncated periodicity play an important role in the efficient analysis of...
Abstract. This paper deals with the derivation and physical interpretation of a uniform high-frequen...
A uniform, high-frequency solution is presented for the electromagnetic field radiated at finite dis...
A uniform, high-frequency solution is presented for the electromagnetic field radiated at finite dis...