We provide for the first time the exact solution of Maxwell's equations for a massless charged particle moving on a generic trajectory at the speed of light. In particular we furnish explicit expressions for the vector potential and the electromagnetic field, which were both previously unknown, finding that they entail different physical features for bounded and unbounded trajectories. With respect to the standard Liénard-Wiechert field the electromagnetic field acquires singular δ-like contributions whose support and dimensionality depend crucially on whether the motion is (a) linear, (b) accelerated unbounded, (c) accelerated bounded. In the first two cases the particle generates a planar shock-wave-like electromagnetic field traveling a...
We briefly report on a recent proposal (Fiore in J Phys A Math Theor 51:085203, 2018) for simplifyin...
The theory of electrodynamics of radiating charges is reviewed with special emphasis on the role of ...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...
Deduce the potentials, electromagnetic fields and Poynting vector of an electric charge q with rest ...
Deduce the potentials, electromagnetic fields and Poynting vector of an electric charge q with rest ...
Massless particles in General Relativity move with the speed of light, their trajectories in spaceti...
We consider charged particle motion in a strong electromagnetic field of an arbitrary configuration ...
An invariant geometrical description of the world lines of charged particles in arbitrary homogeneou...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...
There is a classical theory that can explain various quantum phenomena including the Casimir effect,...
In the present work, we study particle motion in high-intensities electromagnetic fields plasma. Sup...
We discuss the geometric characterization of the trajectory of a moving charged particle, for the ca...
We briefly report on a recent proposal (Fiore in J Phys A Math Theor 51:085203, 2018) for simplifyin...
AbstractCareful calculations using classical field theory show that if a macroscopic ball with unifo...
We briefly report on a recent proposal (Fiore in J Phys A Math Theor 51:085203, 2018) for simplifyin...
We briefly report on a recent proposal (Fiore in J Phys A Math Theor 51:085203, 2018) for simplifyin...
The theory of electrodynamics of radiating charges is reviewed with special emphasis on the role of ...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...
Deduce the potentials, electromagnetic fields and Poynting vector of an electric charge q with rest ...
Deduce the potentials, electromagnetic fields and Poynting vector of an electric charge q with rest ...
Massless particles in General Relativity move with the speed of light, their trajectories in spaceti...
We consider charged particle motion in a strong electromagnetic field of an arbitrary configuration ...
An invariant geometrical description of the world lines of charged particles in arbitrary homogeneou...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...
There is a classical theory that can explain various quantum phenomena including the Casimir effect,...
In the present work, we study particle motion in high-intensities electromagnetic fields plasma. Sup...
We discuss the geometric characterization of the trajectory of a moving charged particle, for the ca...
We briefly report on a recent proposal (Fiore in J Phys A Math Theor 51:085203, 2018) for simplifyin...
AbstractCareful calculations using classical field theory show that if a macroscopic ball with unifo...
We briefly report on a recent proposal (Fiore in J Phys A Math Theor 51:085203, 2018) for simplifyin...
We briefly report on a recent proposal (Fiore in J Phys A Math Theor 51:085203, 2018) for simplifyin...
The theory of electrodynamics of radiating charges is reviewed with special emphasis on the role of ...
This article offers a new approach for analysing the dynamic behaviour of distributions of charged p...