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DualityQP

DualityQP builds silicon‑photonic processors that perform high‑speed, low‑latency classical and quantum computations using light, delivering greater bandwidth and lower power consumption than traditional silicon chips. Their modular platform lets customers connect multiple photonic processors for scalable, quantum‑enabled workloads, and the company offers end‑to‑end design, fabrication, and real‑time diagnostics to support enterprise and research deployments.

Bristol, United KingdomFounded 2020161K+ followers
Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Current electronic processors face physical limits in speed, energy efficiency, and scalability, while emerging quantum computing approaches often require complex, cryogenic hardware that is difficult to integrate with existing systems.

Solution

DualityQP develops photonic processors that use light to perform both classical and quantum computations, offering higher bandwidth and lower power consumption than traditional silicon chips. By integrating photonic circuitry with quantum processing capabilities, the platform enables real-time data fusion and advanced analytics without the need for bulky cryogenic infrastructure. The technology is designed for modular deployment, allowing customers to connect multiple photonic processors to build scalable quantum-enabled systems. DualityQP provides end‑to‑end design, fabrication, and support services to accelerate adoption of photonic computing in enterprise and research environments.

Target Audience

Primary customers are technology enterprises, research institutions, and hardware manufacturers seeking to enhance computing performance with photonic and quantum capabilities.

Features

  • Silicon‑photonic chips that perform high‑speed, low‑latency data processing using optical interconnects
  • Integrated quantum processing units that leverage photon‑based qubits for quantum algorithms
  • Modular architecture enabling seamless connection of multiple photonic processors for scalable workloads
  • End‑to‑end design and manufacturing services, from circuit layout to wafer fabrication
  • Real‑time fusion diagnostics tools for monitoring performance and ensuring system reliability
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