When the Zecman energy approaches the characteristic kinetic energy of electrons, Landau quantization becomes important. In the vicinity of magnetars, the Zeeman energy can even be relativistic. We start from the Dirac equation and derive a kinetic equation for electrons, focusing on the phenomenon of Landau quantization in such ultrastrong but constant magnetic fields, neglecting short-scale quantum phenomena. It turns out that the usual relativistic gamma factor of the Vlasov equation is replaced by an energy operator, depending on the spin state, and also containing momentum derivatives. Furthermore, we show that the energy eigenstates in a magnetic field can be computed as eigenfunctions of this operator. The dispersion relation for ele...
From the general principles of quantum mechanics it is deduced that the wave equation of a particle ...
In order to study the magnetic properties of an ideal Fermi-Dirac gas, it is necessary to study the ...
Solutions of the Dirac wave equation representing a free electron moving in a uniform magnetic field...
We present a quantum kinetic theory for spin-1/2 particles, including the spin–orbit interaction, re...
As is well known, for plasmas of high density and modest temperature, the classical kinetic theory n...
As is well known, for plasmas of high density and modest temperature, the classical kinetic theory n...
In this work we have studied linear wave propagation in magnetized plasmas using a fully relativisti...
In this work we have studied linear wave propagation in magnetized plasmas using a fully relativisti...
In this work we have studied linear wave propagation in magnetized plasmas using a fully relativisti...
This thesis is about developing and studying quantum mechanical models of plasmas. Quantum effects c...
This thesis is about developing and studying quantum mechanical models of plasmas. Quantum effects c...
We investigate the two-dimensional motion of relativistic cold electrons in the presence of ‘strictl...
We investigate the two-dimensional motion of relativistic cold electrons in the presence of ‘strictl...
The increasing precision of experiments on the Zeeman effect of many electron atoms requires an ever...
Possible interactions between plasma waves and charged particles are considered, where the particles...
From the general principles of quantum mechanics it is deduced that the wave equation of a particle ...
In order to study the magnetic properties of an ideal Fermi-Dirac gas, it is necessary to study the ...
Solutions of the Dirac wave equation representing a free electron moving in a uniform magnetic field...
We present a quantum kinetic theory for spin-1/2 particles, including the spin–orbit interaction, re...
As is well known, for plasmas of high density and modest temperature, the classical kinetic theory n...
As is well known, for plasmas of high density and modest temperature, the classical kinetic theory n...
In this work we have studied linear wave propagation in magnetized plasmas using a fully relativisti...
In this work we have studied linear wave propagation in magnetized plasmas using a fully relativisti...
In this work we have studied linear wave propagation in magnetized plasmas using a fully relativisti...
This thesis is about developing and studying quantum mechanical models of plasmas. Quantum effects c...
This thesis is about developing and studying quantum mechanical models of plasmas. Quantum effects c...
We investigate the two-dimensional motion of relativistic cold electrons in the presence of ‘strictl...
We investigate the two-dimensional motion of relativistic cold electrons in the presence of ‘strictl...
The increasing precision of experiments on the Zeeman effect of many electron atoms requires an ever...
Possible interactions between plasma waves and charged particles are considered, where the particles...
From the general principles of quantum mechanics it is deduced that the wave equation of a particle ...
In order to study the magnetic properties of an ideal Fermi-Dirac gas, it is necessary to study the ...
Solutions of the Dirac wave equation representing a free electron moving in a uniform magnetic field...