This company develops networking hardware that enables the transmission of qubits over existing telecom infrastructure. Their products facilitate quantum-secure communication, distributed quantum computing, and quantum sensing by enabling the transport of qubits globally at high speeds.
Funding
Funding not disclosed
Founders
Product
Problem
Quantum computing's potential is limited by the difficulty of connecting individual quantum processors and transmitting quantum information (qubits) over distance. Existing telecom infrastructure is not designed to handle the unique requirements of quantum communication, hindering the development of distributed quantum computing and secure quantum communication networks.
Solution
Quantum Network Technologies (Qunett) develops hardware solutions that enable the transmission of qubits over existing fiber optic networks, facilitating the creation of scalable quantum networks. Their technology allows for the interconnection of quantum devices, enabling distributed quantum computing, secure communication, and enhanced quantum sensing capabilities. Qunett's flexible quantum networking architecture supports diverse quantum information processing platforms and is designed to scale from data centers to metropolitan networks and satellite-based global communication. By integrating with existing infrastructure, Qunett aims to accelerate the deployment of practical quantum applications.
Target Audience
The primary target audience includes quantum computing researchers, telecommunications companies, and government organizations seeking to build and deploy quantum networks for secure communication, distributed computing, and advanced sensing applications.
Features
- Quantum Routers: Built on solid-state spin-photon interfaces in diamond for reliable performance, scalable architecture with high qubit density, and long memory coherence for stable quantum state storage.
- Entanglement Sources: Generates highly spectrally multiplexed photon pairs for efficient operation, supports deterministic entanglement generation, and features tunable wavelengths for compatibility with classical networks.
- Transducers: Integrates a variety of quantum devices, is fully compatible with telecom infrastructure, and is optimized for efficient data transmission across fiber networks.
- High-capacity quantum interconnects designed to network multiple quantum processors, enabling scalable distributed quantum computing.
- Memory-based quantum routers provide real-time breach detection, ensuring unconditionally secure communication over free-space and fiber optic channels.
- Integrating quantum sensors with quantum computers accelerates data processing, enabling faster decision-making and greater precision in critical sensing applications.