The broader impact/commercial potential of this Small Business Innovation Research (SBIR) Phase II project is to enable innovators in the area of integrated silicon photonics to experiment with a superior optical material the will result in new approaches, new device architectures, and high density networks that will create technologies that do not exist today as materials available now can’t support such ideas due to current physical limitations. This will be achieved through making available semiconductor fabrication services for special type of materials used in ultra-low power, ultra-fast and ultra-small components at a reasonable cost, with improved manufacturing yields, and reduced development cycle time. The material called Barium Titanate (BaTiO3) can potentially dominate the market for data centers. The BaTiO3-based components are ultra-low power and thus may significantly reduce the power consumption of existing data centers. The work will also support the entirely new markets of quantum and neuromorphic computing. The proposed project will result in the introduction to the market of 200-mm wafers of BaTiO3 on Si for silicon photonics. BaTiO3 alters the speed of light when subjected to electric field more efficiently than almost any other material. The company will develop chemical mechanical polishing and wafer bonding processes, including the necessary process design kits (PDKs) compatible with a standard silicon photonic foundry. This will enable hundre