HfO$_2$-based platform for high-index-contrast visible/UV integrated photonics
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 HfO and AlO composites deposited via Atomic Layer Deposition (ALD) with low loss in the visible and near-UV. We show that AlO incorporation dramatically decreases bulk loss compared to pure HfO, consistent with inhibited crystallization due to the admixture of AlO. Composites exhibit refractive index following the average of that of HfO and AlO, weighted by the HfO fractional composition . At nm, composites with exhibit preserving most of HfO's significantly higher index, and dB/cm material loss. We further present fully etched and cladded waveguides, grating couplers, and ring resonators, realizing single-mode waveguide loss of dB/cm inferred from resonators of 2.6 million intrinsic quality factor at nm, dB/cm at nm, and dB/cm at nm. We measure the composite's thermo-optic coefficient (TOC) to be RIU/C near nm. This work establishes (HfO)(AlO) composites as a platform amenable to integration for low-loss, high-index photonics spanning the UV to NIR.
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}
}