Introducing Omega - Inside the Chipset
Learn more about PsiQuantum’s new paper in Nature that reviews the silicon photonics platform it has developed in partnerships with GlobalFoundries and other fab partners.
DARPA Selects PsiQuantum to Advance to Final Phase of Quantum Computing Program
Final Phase of Utility-Scale Quantum Computing Program to Focus on Production-Scale Quantum Computing Technology and High-Impact Use Cases
PsiQuantum opens UK-based research facility to develop next-generation high-power cryogenic systems for large-scale quantum computing
PsiQuantum has teamed up with STFC’s Daresbury Laboratory to develop the next generation of high-power cryogenic modules which will be necessary to scale photonic quantum computers to millions of qubits. PsiQuantum will work with Daresbury Laboratory experts specialized in large-scale cryogenic infrastructure to develop advanced cryogenic systems.
PsiQuantum Will Partner with DARPA to Accelerate Path to Build the World’s First Utility-Scale Quantum Computer
We recently announced a new approach to vastly increasing the efficiency of running quantum algorithms. We call it the Active Volume Architecture. The key insight is that if you have access to certain hardware capabilities then you can obtain remarkable reductions in the running costs of commercially useful quantum algorithms (for example, reducing running costs by around 50x for factoring algorithms).
PsiQuantum Announces Breakthrough in Architectures for Error-Corrected Quantum Computing
We recently announced a new approach to vastly increasing the efficiency of running quantum algorithms. We call it the Active Volume Architecture. The key insight is that if you have access to certain hardware capabilities then you can obtain remarkable reductions in the running costs of commercially useful quantum algorithms (for example, reducing running costs by around 50x for factoring algorithms).