Senior Quantum Error Correction Research Scientist, Applied Research

NVIDIA NVIDIA · Semiconductors · Redmond, WA +1

Research Scientist role focused on Quantum Error Correction and Fault Tolerance, developing novel approaches to decoding quantum error correction codes and their logical operations, and co-designing improved methods for scaled decoders. Collaborates with internal teams and external partners on technology components for a fault-tolerant software stack integrated with quantum hardware.

What you'd actually do

  1. Path-find technical innovations in Quantum Error Correction and Fault Tolerance, working with multi-functional teams in Product, Engineering, and Applied Research
  2. Develop novel approaches to decoding quantum error correction codes and their logical operations, including researching advanced implementations in hardware
  3. Research and co-design improved methods to achieve more scaled decoders
  4. Collaborate with internal teams and external partners on developing technology components to enable a fault-tolerant software stack integrated with quantum hardware
  5. Adopt a culture of collaboration, rapid innovation, technical depth, and creative problem solving

Skills

Required

  • Masters degree in Physics, Computer Science, Chemistry, Applied Mathematics, or related engineering field or equivalent experience
  • Extensive background in Quantum Information Science with 6+ overall years of experience in the Quantum Computing industry
  • A demonstrated ability to deliver high impact value in quantum error correction and decoding

Nice to have

  • Ph.D. preferred
  • Hands-on experience in scientific computing, high-performance computing, applied machine learning, or deep learning
  • Experience with co-design of quantum error correction with quantum hardware or quantum applications
  • Experience with CUDA and NVIDIA GPUs
  • Passion to drive technology innovations into NVIDIA software and hardware products to support Quantum Computing

What the JD emphasized

  • extensive background in Quantum Information Science
  • demonstrated ability to deliver high impact value in quantum error correction and decoding