RESOURCES

OQC's Quantum Resources

Analysing variations in Josephson junction barriers using a combined approach

Analysing variations in Josephson junction barriers using a combined approach

In our recent research, we consider multiple techniques to understand the make-up ...
Analysis of Josephson junction barrier variation — a combined STEM, breakdown and Monte-Carlo approach

Analysis of Josephson junction barrier variation — a combined STEM, breakdown and Monte-Carlo approach

Understanding the make-up of Josephson junctions to secure robust feedback metrics which ...
Paving the way for millions of quantum operations

Paving the way for millions of quantum operations

Reaching the MegaQuop era of quantum computing is a key milestone on ...
Quantum Energy in the Alps: Reflections on the QEI Workshop 2025

Quantum Energy in the Alps: Reflections on the QEI Workshop 2025

The Quantum Energy Initiative Workshop aimed to create a forum for stakeholders ...
Energy efficiency and quantum compute

Energy efficiency and quantum compute

Quantum computing could positively impact the energy efficiency of compute. In our ...
Integration of through-sapphire substrate machining with superconducting quantum processors

Integration of through-sapphire substrate machining with superconducting quantum processors

Superconducting qubits are a promising route to achieving large-scale quantum computers. In ...
Resilient systems: OQC Toshiko and natural disasters

Resilient systems: OQC Toshiko and natural disasters

Designing quantum computers that are resilient has the potential to become the ...
A Sky Full of Synthetic Stars: How the Flexibility of Superconducting Qubits Sparks Innovation

A Sky Full of Synthetic Stars: How the Flexibility of Superconducting Qubits Sparks Innovation

The design of a superconducting qubit is flexible, giving scientists and engineers ...
Direct Quantum Compute-as-a-Service with OQC and Equinix

Direct Quantum Compute-as-a-Service with OQC and Equinix

OQC and Equinix's partnership has seen an integration of OQC's latest device ...
Virtual Z gates are special because they don't physically alter the qudit's state but instead change the phase of the operations. By assuming these gates are perfect, the new method simplifies the GST process, reducing computational costs and data collection needs.

A more efficient way to characterise the performance of quantum systems

This new GST method successfully characterises qudit logic gates with comparable accuracy ...
What are superconducting qubits?

What are superconducting qubits?

Superconducting qubits are a leading quantum modality. In our new resource, we ...
Left: Josephson junctions fabricated in radial pattern around where it was going to be micro-machined later. Right: JJs located

Overcoming scale-up challenges of sapphire-based quantum processors

In a world-first, we have developed a sapphire micro-machining process that integrates ...