Active Physics & Astronomy Chemistry

QUantum-Integrated CHEmistry (QUICHE)

In plain English

AI plain-English summary

A UK and German team is building a prototype that turns chemical problems into instructions for a quantum computer. The project, called QUICHE, links two British quantum computing firms—Quantum Motion and Riverlane—with the German software company FACCTs. Their goal is to plug quantum computing into an existing chemistry software package called ORCA, creating a pipeline that starts with a real chemical system and ends with a quantum circuit ready to run. Why this matters. Classical computers struggle to simulate molecules accurately as they grow larger. Quantum computers, which process information using qubits, could handle these calculations far more efficiently. But no one has yet built a reliable, practical bridge between a chemist’s problem and a quantum machine. QUICHE aims to build that bridge, developing the decomposition, simulation, and resource-estimation techniques needed to make it work. Potential impact. If the pipeline succeeds, it could speed up quantum chemistry calculations dramatically. That would matter for designing better solar cells, developing new pharmaceuticals, and optimising industrial catalysts—areas where molecular simulation currently bottlenecks progress. The project also helps de-risk quantum computing as a commercial technology, strengthening cross-border collaboration between UK and EU quantum sectors.

View original technical description
QUICHE (QUantum Integrated CHEmistry) is an international partnership between UK-based Quantum Motion and Riverlane and Germany-based FACCTs. The project aims to integrate quantum computing into the industry-leading ORCA chemistry package, creating a prototype pipeline mapping from a chemical system to a quantum circuit. Advanced decomposition, simulation, and resource calculation techniques will be investigated and developed. The QUICHE project contributes towards UK and EU goals of realising commercially viable quantum technologies. It will strengthen cross-border collaboration and help derisk computational chemistry as a practical use case of quantum computing. In the long term, QUICHE has the potential to improve the speed and scale of quantum chemistry calculations, offering improvements in areas such as solar cell design and pharmaceuticals.

View the original record at the funder ↗

Related Research

Grants with similar aims, by meaning.

QUANTIFI - QUANTum computIng For heterogeneous catalytIc materials solutions.
Distributed Quantum Computing and Applications
Q-CHEMION: Optimizing chemistry applications on error-mitigated trapped ion-based quantum computers
International Network on Quantum Annealing (INQA)
CCP-QC: Collaborative Computational Project - Quantum Computinge-

Original classification

Collaborative R&D

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.