English

A cryogenic buffer gas beam source with in-situ ablation target replacement

Atomic Physics 2026-02-17 v2

Abstract

The design and performance of a cryogenic buffer gas beam (CBGB) source with a load-lock system is presented. The ACME III electron electric dipole moment (eEDM) search experiment uses this source to produce a beam of cold, slow thorium monoxide (ThO) molecules. A key feature of the apparatus is its capability to replace ablation targets without interrupting vacuum or cryogenic conditions, increasing the average signal in the eEDM search. The source produces approximately 1.3×10111.3 \times 10^{11} ground-state ThO molecules per pulse, with a rotational temperature of 4.84.8 K, molecular beam solid angle of 0.310.31 sr, and forward velocity of 200200 m/s. These parameters match the performance of traditional sources that require time-consuming thermal cycles for target replacement. A long-term yield improvement of about 40% is achieved when the load-lock system is used to replace targets biweekly.

Keywords

Cite

@article{arxiv.2505.11647,
  title  = {A cryogenic buffer gas beam source with in-situ ablation target replacement},
  author = {Zhen Han and Zack Lasner and Collin Diver and Peiran Hu and Takahiko Masuda and Xing Wu and Ayami Hiramoto and Maya Watts and Satoshi Uetake and Koji Yoshimura and Xing Fan and Gerald Gabrielse and John M. Doyle and David DeMille},
  journal= {arXiv preprint arXiv:2505.11647},
  year   = {2026}
}

Comments

8 pages, 6 figures

R2 v1 2026-06-28T23:36:46.174Z