Quantum Hardware Lead
Pioneering breakthroughs in quantum hardware development, including revolutionary superconducting qubit technologies and scalable quantum processor architectures.
Specializing in quantum processor architectures with room-temperature superconducting qubits and novel materials science applications.
Creating production-ready quantum systems with high stability, scalability, and error correction implementations for real-world applications.
Spearheading quantum hardware development with breakthroughs in room-temperature superconducting qubits and modular quantum processor assemblies.
Revolutionized superconducting qubit design with first room-temperature capable qubits. Developed scalable qubit manufacturing techniques.
Developed foundational work in error correction for superconducting qubits. Contributed to 15+ peer-reviewed quantum hardware papers.
Seeking collaboration on quantum hardware development or want to discuss the future of quantum computing infrastructure?
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