Introduction At IBM Research, we are the innovation engine of IBM. Exploring what’s next in computing and shaping the technologies the world will rely on tomorrow. From advancing AI and hybrid cloud to pioneering practical quantum computing, we anticipate
Introduction At IBM Research, we are the innovation engine of IBM. Exploring what’s next in computing and shaping the technologies the world will rely on tomorrow. From advancing AI and hybrid cloud to pioneering practical quantum computing, we anticipate
Introduction At IBM Research, we are the innovation engine of IBM. Exploring what’s next in computing and shaping the technologies the world will rely on tomorrow. From advancing AI and hybrid cloud to pioneering practical quantum computing, we anticipate
Minimum qualifications: Masters degree in Electrical Engineering, Physics, related engineering discipline, or equivalent practical experience. Experience in superconductor logic families (e.g., RSFQ, ERSFQ, RQL, HFQ, AQFP). Experience performing tape-out of a superconducting IC chip. One or
Minimum qualifications: PhD in physics, electrical engineering, or a related engineering discipline or equivalent practical experience. 3 years of research or industry experience. Experience performing measurements of superconducting qubits or superconducting digital logic circuits. Experience coding
Introduction At IBM Research, we are the innovation engine of IBM. Exploring what’s next in computing and shaping the technologies the world will rely on tomorrow. From advancing AI and hybrid cloud to pioneering practical quantum computing, we anticipate
Introduction At IBM Research, we are the innovation engine of IBM. Exploring what’s next in computing and shaping the technologies the world will rely on tomorrow. From advancing AI and hybrid cloud to pioneering practical quantum computing, we anticipate
Introduction At IBM Research, we are the innovation engine of IBM. Exploring what’s next in computing and shaping the technologies the world will rely on tomorrow. From advancing AI and hybrid cloud to pioneering practical quantum computing, we anticipate
Your Impact at LILA Your role will involve applying computational condensed matter physics and electronic structure expertise to accelerate materials discovery, optimization, and understanding. You will use first-principles modeling, atomistic simulations, scientific machine learning, and agentic
The full potential of quantum computing will be unlocked with a large-scale computer capable of complex, error‑corrected computations. Quantum AIs mission is to build this computer and unlock solutions to classically intractable problems. Our roadmap is focused on advancing