English

Efficient and tunable frequency conversion using periodically poled thin-film lithium tantalate nanowaveguides

Optics 2025-05-07 v1

Abstract

Thin-film lithium tantalate (TFLT) has recently emerged as a promising photonic platform for chip-scale nonlinear optics due to its weaker photorefraction, higher optical damage threshold, broader transparency window, and lower birefringence compared to that of thin-film lithium niobate. Here we develop an ultralow-loss lithium tantalate integrated photonic platform and report the first functional second harmonic generator based on high-fidelity poling of z-cut TFLT. As a result, quasi-phase matching (QPM) is performed between telecom (1550 nm) and near-visible (775 nm) wavelengths in a straight waveguide and prompts strong second-harmonic generation with a normalized efficiency of 229 %/W/cm2cm^2. An absolute conversion efficiency of 5.5 % is achieved with a pump power of 700 mW. Such a second-harmonic generator exhibits stable temperature tunability (-0.44 nm/C^\circ C) which is important for applications that require precise frequency alignment such as atomic clocks and quantum frequency conversion.

Keywords

Cite

@article{arxiv.2505.03162,
  title  = {Efficient and tunable frequency conversion using periodically poled thin-film lithium tantalate nanowaveguides},
  author = {Simin Yu and Mingyue Qi and Huizong Zhu and Bofu Zhao and Jingchun Qian and Qiushi Chen and Juanjuan Lu},
  journal= {arXiv preprint arXiv:2505.03162},
  year   = {2025}
}
R2 v1 2026-06-28T23:22:24.247Z