English

High-numerical-aperture and long-working-distance objectives for single-atom experiments

Optics 2020-05-20 v1 Atomic Physics

Abstract

We present two long-working-distance objective lenses with numerical apertures (NA) of 0.29 and 0.4 for single-atom experiments. The objective lenses are assembled entirely by the commercial on-catalog Φ\Phi1'' singlets. Both the objectives are capable to correct the spherical aberrations due to the standard flat vacuum glass windows with various thickness. The working distances of NA=0.29=0.29 and NA=0.4=0.4 objectives are 34.6 mm and 18.2 mm, respectively, at the design wavelength of 852 nm with 5-mm thick silica window. In addition, the objectives can also be optimized to work at diffraction limit at single wavelength in the entire visible and near infrared regions by slightly tuning the distance between the first two lenses. The diffraction limited fields of view for NA=0.29=0.29 and NA=0.4=0.4 objectives are 0.62 mm and 0.61 mm, and the spatial resolutions are 1.8 μ\mum and 1.3 μ\mum at the design wavelength. The performances are simulated by the commercial ray-tracing software and confirmed by imaging the resolution chart and a 1.18 μ\mum pinhole. The two objectives can be used for trapping and manipulating single atoms of various species.

Keywords

Cite

@article{arxiv.1911.06929,
  title  = {High-numerical-aperture and long-working-distance objectives for single-atom experiments},
  author = {Shaokang Li and Gang Li and Wei Wu and Qing Fan and Yali Tian and Pengfei Yang and Pengfei Zhang and Tiancai Zhang},
  journal= {arXiv preprint arXiv:1911.06929},
  year   = {2020}
}

Comments

6 pages, 6 figures, 5 tables

R2 v1 2026-06-23T12:17:44.821Z