Building the Hardware That Enables Quantum Possibilities

Device-level research within NQN explores the design, fabrication, and control of quantum devices, including qubits, sensors, and system interconnects. These efforts support the realization of quantum computers and quantum-enabled sensors with increased coherence, fidelity, and scalability.

The team also investigates techniques for packaging, error correction, and environmental stabilization to advance the state of quantum hardware across platforms.

Focus Areas:

  • Superconducting and ion-trap qubits
  • Quantum sensing components
  • Device miniaturization and thermal management
  • Integration with classical control systems

Building the Hardware That Enables Quantum Possibilities

Device-level research within NQN explores the design, fabrication, and control of quantum devices, including qubits, sensors, and system interconnects. These efforts support the realization of quantum computers and quantum-enabled sensors with increased coherence, fidelity, and scalability.

The team also investigates techniques for packaging, error correction, and environmental stabilization to advance the state of quantum hardware across platforms.

Focus Areas:

  • Superconducting and ion-trap qubits
  • Quantum sensing components
  • Device miniaturization and thermal management
  • Integration with classical control systems

Regional Power, Global Impact

Our strength lies in collaboration. NQN brings together companies, universities, national labs,
and business organizations to form a powerful coalition accelerating quantum progress.