We perform a systematic study on the spin decomposition of an electron in QED at one-loop order. It is found that the electron orbital angular momentum defined in Jaffe-Manohar and Ji spin sum rules agree with each other, and the so-called potential angular momentum vanishes at this order. The calculations are performed in both dimensional regularization and Pauli-Villars regularization for the ultraviolet divergences, and they lead to consistent results. We further investigate the calculations in terms of light-front wave functions and find a missing contribution from the instantaneous interaction in light- front quantization. This clarifies the confusing issues raised recently in the literature on the spin decomposition of an electron and...
We study angular momentum in non-relativistic quantum electrodynamics (NRQED). We construct the effe...
International audienceWe calculate the gravitational form factors of the electron at one loop in qua...
The exact diagonalization technique is used to study many-particle properties of interacting electro...
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 investigate the angular momentum decomposition with a quantum electrodynamics example to clarify ...
The classical and quantum mechanical methods are used respectively to calculate the electron spin. I...
The matrix elements of local operators such as the electromagnetic current, the energy-momentum tens...
First online: 05 July 2015The general relativistic symmetry of quantum electrodynamics (QED) predict...
We combine bare perturbation theory with the imaginary time evolution technique to study one-loop ra...
International audienceOne of the challenges of hadronic physics is to fully understand the structure...
International audienceOne of the challenges of hadronic physics is to fully understand the structure...
We provide a theoretical basis for understanding the spin structure of the proton in terms of the sp...
We calculate the gravitational form factors of the electron at one loop in quantum electrodynamics, ...
AbstractWe discuss the orbital angular momentum of partons inside a longitudinally polarized proton ...
We study angular momentum in non-relativistic quantum electrodynamics (NRQED). We construct the effe...
International audienceWe calculate the gravitational form factors of the electron at one loop in qua...
The exact diagonalization technique is used to study many-particle properties of interacting electro...
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 investigate the angular momentum decomposition with a quantum electrodynamics example to clarify ...
The classical and quantum mechanical methods are used respectively to calculate the electron spin. I...
The matrix elements of local operators such as the electromagnetic current, the energy-momentum tens...
First online: 05 July 2015The general relativistic symmetry of quantum electrodynamics (QED) predict...
We combine bare perturbation theory with the imaginary time evolution technique to study one-loop ra...
International audienceOne of the challenges of hadronic physics is to fully understand the structure...
International audienceOne of the challenges of hadronic physics is to fully understand the structure...
We provide a theoretical basis for understanding the spin structure of the proton in terms of the sp...
We calculate the gravitational form factors of the electron at one loop in quantum electrodynamics, ...
AbstractWe discuss the orbital angular momentum of partons inside a longitudinally polarized proton ...
We study angular momentum in non-relativistic quantum electrodynamics (NRQED). We construct the effe...
International audienceWe calculate the gravitational form factors of the electron at one loop in qua...
The exact diagonalization technique is used to study many-particle properties of interacting electro...