I analyse and numerically evaluate the radiation field generated by an experimentally realized embodiment of an electric polarization current whose rotating distribution pattern moves with linear speeds exceeding the speed of light in vacuum. I find that the flux density of the resulting emission (i) has a dominant value and is linearly polarized within a sharply delineated radiation beam whose orientation and polar width are determined by the range of values of the linear speeds of the rotating source distribution, and (ii) decays with the distance $d$ from the source as $d^{-\unicode[STIX]{x1D6FC}}$ in which the value of $\unicode[STIX]{x1D6FC}$ lies betwe...
Nonlinear evolution of the Landau-Lifshitz type can be exactly linearized. Special cases include the...
The propagation of a polarized pulse in random media is investigated using the discrete-ordinates me...
We argue that the dominant radiation mechanism responsible for the early prompt gamma-ray emission o...
We present a theoretical study of the emission from a superluminal polarization current whose distri...
We consider the nonspherically decaying radiation field that is generated by a polarization current ...
The focusing of the radiation generated by a polarization current with a superluminally rotating dis...
Maxwell\u27s equations establish that patterns of electric charges and currents can be animated to t...
We consider the nonspherically decaying radiation field that is generated by a polarization current ...
We present an algorithm for computing the electromagnetic fields due to currents inside and outside ...
We calculate the gradient of the radiation field generated by a polarization current with a superlum...
Under the conditions of quasitransverse propagation of electromagnetic waves in a magnetoionic plasm...
The polarization of maser radiation when the source is permeated by an aligned magnetic field is der...
The propagation of a polarized pulse in random media is investigated using the discrete-ordinates me...
There is a fundamental difference between the classical expression for the retarded electromagnetic ...
A coherent inverse Compton scattering (ICS) mechanism is used to get polarization properties of radi...
Nonlinear evolution of the Landau-Lifshitz type can be exactly linearized. Special cases include the...
The propagation of a polarized pulse in random media is investigated using the discrete-ordinates me...
We argue that the dominant radiation mechanism responsible for the early prompt gamma-ray emission o...
We present a theoretical study of the emission from a superluminal polarization current whose distri...
We consider the nonspherically decaying radiation field that is generated by a polarization current ...
The focusing of the radiation generated by a polarization current with a superluminally rotating dis...
Maxwell\u27s equations establish that patterns of electric charges and currents can be animated to t...
We consider the nonspherically decaying radiation field that is generated by a polarization current ...
We present an algorithm for computing the electromagnetic fields due to currents inside and outside ...
We calculate the gradient of the radiation field generated by a polarization current with a superlum...
Under the conditions of quasitransverse propagation of electromagnetic waves in a magnetoionic plasm...
The polarization of maser radiation when the source is permeated by an aligned magnetic field is der...
The propagation of a polarized pulse in random media is investigated using the discrete-ordinates me...
There is a fundamental difference between the classical expression for the retarded electromagnetic ...
A coherent inverse Compton scattering (ICS) mechanism is used to get polarization properties of radi...
Nonlinear evolution of the Landau-Lifshitz type can be exactly linearized. Special cases include the...
The propagation of a polarized pulse in random media is investigated using the discrete-ordinates me...
We argue that the dominant radiation mechanism responsible for the early prompt gamma-ray emission o...