English

Improved isotope-shift-based bounds on bosons beyond the Standard Model through measurements of the $^2$D$_{3/2} - ^2$D$_{5/2}$ interval in Ca$^+$

Atomic Physics 2020-09-23 v1 High Energy Physics - Experiment High Energy Physics - Phenomenology Quantum Physics

Abstract

We perform high-resolution spectroscopy of the 33d 2~^2D3/23_{3/2} - 3d 2~^2D5/2_{5/2} interval in all stable even isotopes of A^ACa+^+ (A = 40, 42, 44, 46 and 48) with an accuracy of \sim 20 Hz using direct frequency-comb Raman spectroscopy. Combining these data with isotope shift measurements of the 4s 2~^2S1/23_{1/2} \leftrightarrow 3d 2~^2D5/2_{5/2} transition, we carry out a King plot analysis with unprecedented sensitivity to coupling between electrons and neutrons by bosons beyond the Standard Model. Furthermore, we estimate the sensitivity to such bosons from equivalent spectroscopy in Ba+^+ and Yb+^+. Finally, the data yield isotope shifts of the 4s 2~^2S1/23_{1/2} \leftrightarrow 3d 2~^2D3/2_{3/2} transition at 10 part-per-billion through combination with recent data of Knollmann et al (2019).

Keywords

Cite

@article{arxiv.2005.00529,
  title  = {Improved isotope-shift-based bounds on bosons beyond the Standard Model through measurements of the $^2$D$_{3/2} - ^2$D$_{5/2}$ interval in Ca$^+$},
  author = {Cyrille Solaro and Steffen Meyer and Karin Fisher and Julian C. Berengut and Elina Fuchs and Michael Drewsen},
  journal= {arXiv preprint arXiv:2005.00529},
  year   = {2020}
}

Comments

6 pages + appendix, 3 figures, 2 tables