Nu Quantum is developing the Entanglement Fabric, a networking architecture that integrates Quantum Processing Units through a Qubit-Photon Interface to create scalable, entangled qubit networks. This technology enables datacentre-scale quantum computing by facilitating modular hardware and software scaling, addressing the need for significantly more powerful quantum compute systems.
Funding
$19.9M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.






+12Founders
Product
Problem
Quantum computing's potential is currently limited by the scalability of quantum processors; achieving practical, high-impact quantum computation requires systems far more powerful than those available today. Current quantum computing architectures lack the ability to effectively interconnect and scale existing quantum processors.
Solution
Nu Quantum is developing the Entanglement Fabric, a networking architecture designed to enable datacentre-scale quantum computing. The Entanglement Fabric integrates individual Quantum Processing Units (QPUs) through a Qubit-Photon Interface (QPI), facilitating modular hardware and software scaling. This architecture allows existing quantum processors to be woven together with Quantum Networking Units (QNUs) for distributed computing. By creating an abstraction layer, the Entanglement Fabric enables the development of a qubit-agnostic compilation and software stack, accelerating time-to-market and near-term business value.
Target Audience
The primary target audience includes qubit companies, end-users of quantum computing, leaders in the datacentre industry, national government agencies, and top universities seeking to scale quantum computing capabilities.
Features
- Qubit-Photon Interfaces (QPI) adaptable to various qubit modalities for seamless integration into the network
- Quantum Networking Units (QNU) to weave together existing quantum processors
- Hardware solutions for creating entangled qubit networks, including high-speed computer network interfaces, photonic switching fabrics, and control systems
- Abstraction layer enabling the development of a qubit-agnostic compilation and software stack
- Technology facilitating modular scaling by connecting existing quantum processors with networking units for distributed computing