Real-World Use Cases for Quantum Acceleration

The Applications team focuses on identifying and validating quantum-accelerated solutions for challenges in energy, climate, materials science, and other domains aligned with DOE missions. Our research emphasizes quantum simulations, particularly in chemistry and condensed matter systems, where classical methods fall short.

By developing early-stage applications and benchmarking them on current and future quantum testbeds, this group helps demonstrate the value of quantum technologies to real-world problems, forming a bridge between theory, experimentation, and industry.

Focus Areas:

  • Quantum simulation of chemical systems for energy materials
  • Modeling quantum effects in complex materials
  • Benchmarking quantum advantage for targeted use cases

Real-World Use Cases for Quantum Acceleration

The Applications team focuses on identifying and validating quantum-accelerated solutions for challenges in energy, climate, materials science, and other domains aligned with DOE missions. Our research emphasizes quantum simulations, particularly in chemistry and condensed matter systems, where classical methods fall short.

By developing early-stage applications and benchmarking them on current and future quantum testbeds, this group helps demonstrate the value of quantum technologies to real-world problems, forming a bridge between theory, experimentation, and industry.

Focus Areas:

  • Quantum simulation of chemical systems for energy materials
  • Modeling quantum effects in complex materials
  • Benchmarking quantum advantage for targeted use cases

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.