qGDP: Quantum Legalization and Detailed Placement for Superconducting Quantum Computers

  1. Junyao Zhang,
  2. Guanglei Zhou,
  3. Feng Cheng,
  4. Jonathan Ku,
  5. Qi Ding,
  6. Jiaqi Gu,
  7. Hanrui Wang,
  8. Hai "Helen" Li,
  9. and Yiran Chen
Noisy Intermediate-Scale Quantum (NISQ) computers are currently limited by their qubit numbers, which hampers progress towards fault-tolerant quantum computing. A major challenge in

Qplacer: Frequency-Aware Component Placement for Superconducting Quantum Computers

  1. Junyao Zhang,
  2. Hanrui Wang,
  3. Qi Ding,
  4. Jiaqi Gu,
  5. Reouven Assouly,
  6. William D. Oliver,
  7. Song Han,
  8. Kenneth R. Brown,
  9. Hai "Helen" Li,
  10. and Yiran Chen
Noisy Intermediate-Scale Quantum (NISQ) computers face a critical limitation in qubit numbers, hindering their progression towards large-scale and fault-tolerant quantum computing.