QuJiT provides a patented, energy‑aware quantum control framework that sits between hardware and algorithms, applying constraint‑based control to shape quantum state dynamics across the entire system.
Funding
Funding not disclosed
Founders
Product
Problem
Quantum computers experience increasing instability, error accumulation, and loss of control as the number of qubits grows, limiting usable performance despite hardware improvements. There is currently no standardized control layer that optimizes system‑level behavior across hardware and algorithms.
Solution
QuJiT offers a patented, energy‑aware quantum control framework that sits between quantum hardware and algorithmic layers. By applying constraint‑based control to the dynamics of quantum states, the platform shapes how states evolve over time rather than optimizing individual gate operations in isolation. This system‑level approach improves stability under repeated operations, manages excitation behavior, and enhances reliability as qubit counts increase. The framework can be integrated with existing experimental platforms, such as three‑qubit NMR quantum computers, enabling better utilization of current hardware without redesign. Consequently, quantum systems become more usable for real‑world applications and research.
Target Audience
Primary customers are quantum hardware manufacturers, research laboratories, and academic institutions developing or operating multi‑qubit quantum computers that need enhanced control and reliability.
Features
- Constraint‑based, energy‑aware control layer that modulates quantum state dynamics across the entire system
- Improves stability and reduces error accumulation during repeated quantum operations
- Manages excitation behavior to prevent uncontrolled energy buildup in larger qubit arrays
- Compatible with existing hardware platforms, including NMR and superconducting quantum computers
- Enables system‑level optimization without requiring hardware redesign or additional physical components
- Supports integration with research and development workflows, facilitating experiments on multi‑qubit platforms