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Low loss monolithic barium titanate on insulator integrated photonics with intrinsic quality factor >1 million

Optics 2025-07-29 v2 Applied Physics

Abstract

Barium titanate (BTO) has been experiencing a surge of interest for integrated photonics technologies because of its large nonlinear optical coefficients, especially the Pockels coefficient, and in part due to newly available thin-film substrates. In this work, we report on the development of a redeposition-free dry etching technique for monolithic BTO-on-insulator photonics, that produces very low-roughness and high-verticality waveguides. Using this, we experimentally demonstrate the first BTO microresonators with intrinsic Q-factor >1> 1 million, and waveguide propagation loss as small as 0.32 dB/cm, representing the lowest losses reported in any BTO-based integrated platform to date. We additionally demonstrate Mach-Zehnder amplitude modulators with VπL=0.54V_{\pi}L = 0.54 V\cdotcm and effective electro-optic coefficient reff=162r_\text{eff} = 162 pm/V.

Keywords

Cite

@article{arxiv.2507.17150,
  title  = {Low loss monolithic barium titanate on insulator integrated photonics with intrinsic quality factor >1 million},
  author = {Gwan In Kim and Jieun Yim and Gaurav Bahl},
  journal= {arXiv preprint arXiv:2507.17150},
  year   = {2025}
}

Comments

16 pages and supplementary information is included