English

$\beta$-BaB$_2$O$_4$ deep UV monolithic walk-off compensating tandem

Optics 2016-08-16 v1

Abstract

The generation of watt-level cw narrow-linewidth sources at specific deep UV wavelengths corresponding to atomic cooling transitions usually employs external cavity-enhanced second-harmonic generation (SHG) of moderate-power visible lasers in birefringent materials. In this work, we investigate a novel approach to cw deep-UV generation by employing the low-loss BBO in a monolithic walkoff-compensating structure [Zondy {\it{et al}}, J. Opt. Soc. Am. B {\bf{20}} (2003) 1675] to simultaneously enhance the effective nonlinear coefficient while minimizing the UV beam ellipticity under tight focusing. As a preliminary step to cavity-enhanced operation, and in order to apprehend the design difficulties stemming from the extremely low acceptance angle of BBO, we investigate and analyze the single-pass performance of a Lc=8L_c=8 mm monolithic walk-off compensating structure made of 2 optically-contacted BBO plates cut for type-I critically phase-matched SHG of a cw λ=570.4\lambda=570.4nm dye laser. As compared with a bulk crystal of identical length, a sharp UV efficiency enhancement factor of 1.65 has been evidenced with the tandem structure, but at 1\sim-1nm from the targeted fundamental wavelength, highlighting the sensitivity of this technique when applied to a highly birefringent material such as BBO. Solutions to angle cut residual errors are identified so as to match accurately more complex periodic-tandem structure performance to any target UV wavelength, opening the prospect for high-power, good beam quality deep UV cw laser sources for atom cooling and trapping.

Keywords

Cite

@article{arxiv.physics/0512190,
  title  = {$\beta$-BaB$_2$O$_4$ deep UV monolithic walk-off compensating tandem},
  author = {J. Friebe and K. Moldenhauer and E. M. Rasel and W. Ertmer and L. Isaenko and A. Yelisseyev and J. -J. Zondy},
  journal= {arXiv preprint arXiv:physics/0512190},
  year   = {2016}
}

Comments

21 pages, 8 figures, to appear in Opt. Commun

R2 v1 2026-07-22T19:07:55.668Z