Funding
Funding not disclosed
Founders
Product
Problem
Superconducting qubits lose coherence within microseconds, making real-time error correction and control extremely challenging. Existing control hardware cannot react quickly enough or scale to the millions of qubits required for fault‑tolerant quantum computers.
Solution
Quantum Control delivers hardware‑accelerated quantum feedback systems that operate with sub‑5 µs latency, fast enough to intervene before decoherence degrades qubit states. Their hierarchical decoder architecture provides O(log n) computational scaling, enabling error‑correction routines that remain efficient even for million‑qubit processors. An AI‑driven code discovery engine automatically generates hardware‑optimized quantum error‑correction codes, improving error suppression beyond manually designed solutions. Formal verification based on category theory guarantees stability and correctness of the generated control code before deployment, while extensions to infinite‑dimensional (continuous‑variable) systems broaden applicability to photonic quantum platforms.
Target Audience
Primary customers are quantum hardware manufacturers, research labs, and cloud quantum computing providers that require ultra‑fast, scalable, and provably correct control solutions for superconducting and photonic qubit platforms.
Features
- Sub‑5 µs control latency achieved through dedicated hardware acceleration, outpacing decoherence in superconducting qubits
- Hierarchical decoder with O(log n) scaling, supporting error correction for systems up to millions of qubits
- Machine‑learning code discovery that automatically creates hardware‑optimized quantum error‑correction codes
- Formal verification framework using category theory to prove stability and generate verified control code across platforms
- Support for continuous‑variable quantum control, enabling room‑temperature photonic quantum computing
- Universal compatibility with diverse quantum hardware architectures