The startup develops a universal quantum computing platform that utilizes hybrid integrated photonics to enable multi-million qubit operations. This technology provides clients with a suite of products for quantum cybersecurity and networking, addressing the need for scalable and efficient quantum computing solutions.
Funding
$8.7M 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.
IUFounders
Product
Problem
Current quantum computing platforms face scalability challenges due to reliance on complex hardware and cooling systems, hindering the development of practical, fault-tolerant quantum computers capable of solving real-world problems. Existing quantum solutions often lack the speed and connectivity required for complex computations across various industries.
Solution
Aegiq is developing a full-stack photonic quantum computing platform leveraging hybrid integrated photonics to enable scalable and efficient quantum computation. Their approach uses proprietary photonic microchips and high-volume semiconductor manufacturing to create compact, modular, and reconfigurable quantum systems. The Artemis photonic quantum computer can be deployed in both analog and gate-based modes, offering flexibility for different quantum algorithms and applications. Aegiq's platform is designed for seamless integration into standard data center environments with mild cooling requirements and standard telecom optical fiber interconnectivity. The company provides comprehensive end-user solutions, including component modules, hardware systems, and quantum software, to maximize customer value in optimization, quantum simulation, and data analytics.
Target Audience
Aegiq's primary customers include organizations in defense, aerospace, cybersecurity, AI, telecom, automotive, finance, healthcare, and energy sectors seeking advanced computational solutions for complex problems.
Features
- Hybrid modular photonic integrated circuits interfaced with optical fiber
- High-volume foundry semiconductor manufacturing for scalability
- Modular interconnectivity using standard telecom optical fiber
- Mild cooling for simple integration into standard environments
- Reconfigurable system for deployment in analog and gate-based modes
- Quantum software solutions for optimization, simulation, and data analytics
- Fastest modality clock cycles for achieving commercial advantage