Designing, developing, and optimizing fault-tolerant quantum algorithms.
Designing, developing, and optimizing fault-tolerant quantum algorithms.
We’re reducing cost by integrating classical components on-chip, using the same photonics platform we built for quantum computing.
We’re reducing cost by integrating classical components on-chip, using the same photonics platform we built for quantum computing.
This year we're breaking ground on the real thing, two utility-scale quantum computers in Brisbane and Chicago.
This year we're breaking ground on the real thing, two utility-scale quantum computers in Brisbane and Chicago.
We developed a 300mm manufacturing process for one of the strongest electro-optic materials known to science, barium titanate (BTO).
We developed a 300mm manufacturing process for one of the strongest electro-optic materials known to science, barium titanate (BTO).
Boehringer Ingelheim brings us closer to calculating the exact electronic structure of Cytochrome P450 and FeMoco on a quantum computer, with >200X reduction in resources relative to state-of-the-art quantum algorithms. arxiv.org/abs/2501.06165
Boehringer Ingelheim brings us closer to calculating the exact electronic structure of Cytochrome P450 and FeMoco on a quantum computer, with >200X reduction in resources relative to state-of-the-art quantum algorithms. arxiv.org/abs/2501.06165
Work with cutting-edge tech, solve big problems, & shape industries. Let's make history together!
Work with cutting-edge tech, solve big problems, & shape industries. Let's make history together!