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That's what supplies the relativistic particles and magnetic fields to sustain the storm."
Without scattering, electrons simply obey Newton's second law of motion at relativistic particle.
The second approach to the problem of accelerating relativistic particles is the isochronous cyclotron.
Taking the scale length small and neglecting the gravitational effects, he got the standard equations of relativistic particle theory.
This provided a new way of measuring the Lorentz factor of the relativistic particles.
Consider a massless relativistic particle approaching a potential step of height with energy and momentum .
In the vicinity of the K-points the energy depends linearly on the wave vector, similar to a relativistic particle.
A relativistic particle is a subatomic particle moving at relativistic speed.
This is the mathematically precise form of the relativistic particle propagator, free of any ambiguities.
Plasma was injected into the ergosphere of the kernel, picked up energy, and emerged as a highly relativistic particle stream.
There are a number of equations describing relativistic particles: see relativistic wave equations.
A charged relativistic particle crossing the interface of two media with different dielectric constants emits transition radiation.
One interpretation of the paradox is that a potential step cannot reverse the direction of the group velocity of a massless relativistic particle.
Such relativistic particles are generated in particle accelerators, and are naturally occurring in cosmic radiation.
Inverse-Compton scattering can be viewed as Thomson scattering in the rest frame of the relativistic particle.
Spin of a relativistic particle moving in a circular orbit precesses similar to the swing plane of Foucault pendulum.
The motivation uses photons, which are relativistic particles with dynamics determined by Maxwell's equations, as an analogue for all types of particles.
In practical cases, most relativistic particles (e.g., cosmic-ray muons) are minimum ionizing particles.
They are known as radio bubbles, because they appear as emitters of radio waves due to the relativistic particles in the bubble.
In 1967 he published the first specific suggestion that strongly magnetized neutron stars could release their rotational energy and produce a large flow of relativistic particles.
For example, we can write a Lagrangian for a relativistic particle, which will be valid even if the particle is traveling close to the speed of light.
The TRD detects transition radiation of relativistic particles with a lorentz factor γ exceeding 1000.
This is to take advantage of the successful description of relativistic particles by Eugene Paul Wigner in his famous paper of 1939.
Helical Dirac fermion, which behaves like a massless relativistic particle, has been observed in a 3D topological insulator.
A relativistic particle is a particle which moves with a relativistic speed; that is, a speed comparable to the speed of light.