English

HfO$_2$-based platform for high-index-contrast visible/UV integrated photonics

Optics 2025-05-06 v2

Abstract

Ultraviolet and visible integrated photonics are enabling for applications in quantum information, sensing, and spectroscopy, among others. Few materials support low-loss photonics into the UV, and the relatively low refractive index of known depositable materials limits the achievable functionality. Here we present a high-index integrated photonics platform based on HfO2_2 and Al2_2O3_3 composites deposited via Atomic Layer Deposition (ALD) with low loss in the visible and near-UV. We show that Al2_2O3_3 incorporation dramatically decreases bulk loss compared to pure HfO2_2, consistent with inhibited crystallization due to the admixture of Al2_2O3_3. Composites exhibit refractive index nn following the average of that of HfO2_2 and Al2_2O3_3, weighted by the HfO2_2 fractional composition xx. At λ=375\lambda=375 nm, composites with x=0.67x=0.67 exhibit n=2.08n=2.08 preserving most of HfO2_2's significantly higher index, and 3.8(7)3.8(7) dB/cm material loss. We further present fully etched and cladded waveguides, grating couplers, and ring resonators, realizing single-mode waveguide loss of 0.25(2)0.25(2) dB/cm inferred from resonators of 2.6 million intrinsic quality factor at λ=729\lambda=729 nm, 2.6(2)2.6(2) dB/cm at λ=405\lambda=405 nm, and 7.7(6)7.7(6) dB/cm at λ=375\lambda=375 nm. We measure the composite's thermo-optic coefficient (TOC) to be 2.44(3)×1052.44(3) \times 10^{-5} RIU/^\circC near λ=397\lambda=397 nm. This work establishes (HfO2_2)x_x(Al2_2O3_3)1x_{1-x} composites as a platform amenable to integration for low-loss, high-index photonics spanning the UV to NIR.

Keywords

Cite

@article{arxiv.2412.09421,
  title  = {HfO$_2$-based platform for high-index-contrast visible/UV integrated photonics},
  author = {Oscar Jaramillo and Vighnesh Natarajan and Hamim Mahmud Rivy and Joshua Tensuan and Leonardo Massai and Karan K. Mehta},
  journal= {arXiv preprint arXiv:2412.09421},
  year   = {2025}
}
R2 v1 2026-06-28T20:32:42.541Z