activity
20162022
most citedPosition and spin in relativistic quantum mechanics

46 citations · 131 across the 9 of their papers we have counts for

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Showing 2020Show all

6 papers · 1 filter

hep-ph2020★ 2 cited

Exotic States in a Holographic Theory

H. G. Dosch, S. J. Brodsky, G. F. de Téramond +2

Supersymmetric Light Front Holographic QCD is a holographic theory, which not only describes the spectroscopy of mesons and baryons, but also predicts the existence and spectroscop…

hep-th2020

Abelian and Non-Abelian Monopole Configuration in Condensed Matters

Yunkyu Bang, Y. M. Cho, Tieyan Si +1

We discuss the Abelian and non-Abelian monopoles which could exist in condensed matters. We show how the Dirac monopole can be regularized by the charge screening, and argue that t…

quant-ph2020

General quantum-mechanical solution for twisted electrons in a uniform magnetic field

Liping Zou, Pengming Zhang, Alexander J. Silenko

A theory of twisted (and other structured) paraxial electrons in a uniform magnetic field is developed. The obtained general quantum-mechanical solution of the relativistic paraxia…

quant-ph2020★ 46 cited

Position and spin in relativistic quantum mechanics

Liping Zou, Pengming Zhang, Alexander J. Silenko

The problem of the position and spin in relativistic quantum mechanics is analyzed in detail. It is definitively shown that the position and spin operators in the Foldy-Wouthuysen…

quant-ph2020

Paraxial wave function and Gouy phase for a relativistic electron in a uniform magnetic field

Liping Zou, Pengming Zhang, Alexander J. Silenko

A connection between relativistic quantum mechanics in the Foldy-Wouthuysen representation and the paraxial equations is established for a Dirac particle in external fields. The pa…

hep-th2020

Regularization of Electroweak Monopole by Charge Screening and BPS Energy Bound

Pengming Zhang, Li-Ping Zou, Y. M. Cho

We show that the electroweak monopole can be regularized with a non-vacuum electromagnetic permittivity. This allows us to set a new BPS bound for the monopole mass, which implies…