We combine bare perturbation theory with the imaginary time evolution technique to study one-loop radiative corrections to various components of angular momentum of the electron. Our investigations are based on the canonical decomposition of angular momentum, where spin and orbital components, associated with fermionic and electromagnetic degrees of freedom, are individually approached. We use for this purpose quantum electrodynamics in the general covariant gauge and develop a formalism, based on the repeated use of the Sochocki-Plemelj formula, for proper enforcement of the imaginary time limit. It is then shown that careful implementation of imaginary time evolutions is crucial for getting a correct result for total angular momentum of t...
The properties of angular momentum and its connection to magnetic momentum are explored, b...
The properties of angular momentum and its connection to magnetic momentum are explored, b...
In December 1924 Wolfgang Pauli proposed the idea of an inner degree of freedom of the electron, whi...
We study angular momentum of the electron stored in its electric and magnetic fields. We use for thi...
The angular momentum of the physical electron, modelled as a Dirac fermion coupled to the electromag...
We give a simple derivation and expansion of a recently proposed new relativistic interaction betwee...
We study theoretically by means of quantum electrodynamics the vortex radiation of a relativistic el...
Motivated by recent interest in relativistic electron vortex states, we revisit the spin and orbital...
AbstractWe argue that due to parity constraints, the helicity combination of the purely momentum spa...
Free electrons with a helical phase front, referred to as “twisted” electrons, possess an orbital an...
We perform a systematic study on the spin decomposition of an electron in QED at one-loop order. It ...
We perform a systematic study on the spin decomposition of an electron in QED at one-loop order. It ...
We perform a systematic study on the spin decomposition of an electron in QED at one-loop order. It ...
Free electrons with a helical phase front, referred to as "twisted" electrons, possess an orbital an...
Free electrons with a helical phase front, referred to as "twisted" electrons, possess an orbital an...
The properties of angular momentum and its connection to magnetic momentum are explored, b...
The properties of angular momentum and its connection to magnetic momentum are explored, b...
In December 1924 Wolfgang Pauli proposed the idea of an inner degree of freedom of the electron, whi...
We study angular momentum of the electron stored in its electric and magnetic fields. We use for thi...
The angular momentum of the physical electron, modelled as a Dirac fermion coupled to the electromag...
We give a simple derivation and expansion of a recently proposed new relativistic interaction betwee...
We study theoretically by means of quantum electrodynamics the vortex radiation of a relativistic el...
Motivated by recent interest in relativistic electron vortex states, we revisit the spin and orbital...
AbstractWe argue that due to parity constraints, the helicity combination of the purely momentum spa...
Free electrons with a helical phase front, referred to as “twisted” electrons, possess an orbital an...
We perform a systematic study on the spin decomposition of an electron in QED at one-loop order. It ...
We perform a systematic study on the spin decomposition of an electron in QED at one-loop order. It ...
We perform a systematic study on the spin decomposition of an electron in QED at one-loop order. It ...
Free electrons with a helical phase front, referred to as "twisted" electrons, possess an orbital an...
Free electrons with a helical phase front, referred to as "twisted" electrons, possess an orbital an...
The properties of angular momentum and its connection to magnetic momentum are explored, b...
The properties of angular momentum and its connection to magnetic momentum are explored, b...
In December 1924 Wolfgang Pauli proposed the idea of an inner degree of freedom of the electron, whi...