Crypto news

17.06.2026
09:36

OVHcloud integrates Quobly's quantum computer into its cloud platform: launch in 2026

French cloud provider OVHcloud is expanding its Quantum Platform, announcing the integration of the first commercially available quantum computer from Quobly, called Alloy Pioneer. The device, based on silicon spin qubits, is expected to appear in the company's sovereign cloud by the end of 2026.

This move marks a significant milestone in the development of quantum computing as a service (QCaaS). Alloy Pioneer will not just be an experimental prototype, but a full-fledged commercial product accessible through OVHcloud's cloud infrastructure. For the market, this signals that quantum technologies are gradually transitioning from laboratories to the real sector.

Technological Foundation: Silicon and Industrial Standards

Quobly's key advantage lies in its use of 300mm FD-SOI wafers. This is an industrial standard in semiconductor manufacturing that has been used in traditional electronics for decades. This approach not only allows for scaling quantum computing but also ensures compatibility with existing computing infrastructure. Unlike exotic materials used in other quantum systems, silicon qubits can be produced at existing factories, significantly lowering barriers to adoption.

From an architectural perspective, Quobly's spin qubits demonstrate high stability and potentially lower sensitivity to external interference compared to alternatives. This is critically important for creating fault-tolerant quantum processors capable of solving practical tasks—from cryptography to optimizing complex financial models.

My professional opinion: Integrating a quantum computer into OVHcloud's cloud platform is not just a technological novelty, but a strategic move that could democratize access to quantum computing. However, a real breakthrough will only occur when quantum systems can outperform classical ones on specific tasks. For now, Alloy Pioneer is more of a bridge to the future than a revolution today.