English

Preferred-Frame and CP-Violation Tests with Polarized Electrons

High Energy Physics - Experiment 2008-12-18 v1

Abstract

We used a torsion pendulum containing 1023\approx 10^{23} polarized electrons to search new interactions that couple to electron spin. We limit CP-violating interactions between the pendulum's electrons and unpolarized matter in the earth or the sun, test for rotation and boost-dependent preferred-frame effects using the earth's rotation and velocity with respect to the entire cosmos, and search for exotic velocity-dependent potentials between polarized electrons and unpolarized matter in the sun and moon. Finally, we find that the gravitational mass of an electron spinning toward the galactic center differs by less than about 1 part in 102110^{21} from an electron spinning in the opposite direction. As a byproduct of this work, the density of polarized electrons in Sm Co5_5 was measured to be (4.19±0.19)×1022cm3(4.19\pm 0.19)\times 10^{22} {\rm cm}^{-3} at a field of 9.6 kG.

Keywords

Cite

@article{arxiv.0808.2673,
  title  = {Preferred-Frame and CP-Violation Tests with Polarized Electrons},
  author = {B. R. Heckel and E. G. Adelberger and C. E. Cramer and T. S. Cook and S. Schlamminger and U. Schmidt},
  journal= {arXiv preprint arXiv:0808.2673},
  year   = {2008}
}

Comments

54 pages, 18 figures, Submitted to PRD

R2 v1 2026-06-21T11:12:10.357Z