English

Relativistic helicity and link in Minkowski space-time

Mathematical Physics 2014-05-05 v3 math.MP

Abstract

A relativistic helicity has been formulated in the four-dimensional Minkowski space-time. Whereas the relativistic distortion of space-time violates the conservation of the conventional helicity, the newly defined relativistic helicity conserves in a barotropic fluid or plasma, dictating a fundamental topological constraint. The relation between the helicity and the vortex-line topology has been delineated by analyzing the linking number of vortex filaments which are singular differential forms representing the pure states of Banach algebra. While the dimension of space-time is four, vortex filaments link, because vorticities are primarily 2-forms and the corresponding 2-chains link in four dimension; the relativistic helicity measures the linking number of vortex filaments that are proper-time cross-sections of the vorticity 2-chains. A thermodynamic force yields an additional term in the vorticity, by which the vortex filaments on a reference-time plane are no longer pure states. However, the vortex filaments on a proper-time plane remain to be pure states, if the thermodynamic force is exact (barotropic), thus, the linking number of vortex filaments conserves.

Keywords

Cite

@article{arxiv.1308.2455,
  title  = {Relativistic helicity and link in Minkowski space-time},
  author = {Z. Yoshida and Y. Kawazura and T. Yokoyama},
  journal= {arXiv preprint arXiv:1308.2455},
  year   = {2014}
}
R2 v1 2026-06-22T01:07:44.331Z