English

Zig-zag dynamics in a Stern-Gerlach spin measurement

Quantum Physics 2024-03-14 v2 Statistical Mechanics

Abstract

The one-century-old Stern-Gerlach setup is paradigmatic for a quantum measurement. We visualize the electron trajectories following the Bohmian zig-zag dynamics. This dynamics was developed in order to deal with the fundamentally massless nature of particles (with mass emerging from the Brout-Englert-Higgs mechanism). The corresponding trajectories exhibit a stochastic zig-zagging, as the result of the coupling between left- and right-handed chiral Weyl states. This zig-zagging persists in the nonrelativistic limit, which will be considered here, and which is described by the Pauli equation for a nonuniform external magnetic field. Our results clarify the different meanings of ``spin'' as a property of the wave function and as a random variable in the Stern-Gerlach setup, and they illustrate the notion of effective collapse. We also examine the case of an EPR-pair. By letting one of the entangled particles pass through a Stern-Gerlach device, the nonlocal influence (action-at-a-distance) on the other particle is manifest in its trajectory, e.g. by initiating its zig-zagging.

Keywords

Cite

@article{arxiv.2311.13406,
  title  = {Zig-zag dynamics in a Stern-Gerlach spin measurement},
  author = {Simon Krekels and Christian Maes and Kasper Meerts and Ward Struyve},
  journal= {arXiv preprint arXiv:2311.13406},
  year   = {2024}
}

Comments

18 pages, 9 figures; v2 minor corrections

R2 v1 2026-06-28T13:28:35.772Z