Job Description
Join Nexus Quantum Labs at the forefront of technological evolution as we pioneer the next generation of quantum computing systems. We're seeking a visionary 2026 Quantum Computing Architect to design scalable fault-tolerant architectures that will redefine computational capabilities. This role offers unparalleled opportunity to shape the future of quantum information processing while working with Nobel Prize-winning researchers and cutting-edge hardware.
Our state-of-the-art facility in San Francisco provides an environment where innovation thrives. You'll lead cross-disciplinary teams in developing quantum algorithms, error mitigation protocols, and hybrid quantum-classical frameworks. The ideal candidate will balance deep theoretical knowledge with practical implementation skills to transform quantum concepts into tangible technological solutions.
Responsibilities
- Design and implement fault-tolerant quantum computing architectures for 2026-era systems
- Develop hybrid quantum-classical integration frameworks for enterprise applications
- Lead quantum algorithm optimization for real-world computational challenges
- Collaborate with hardware teams to co-design quantum processor architectures
- Establish quantum security protocols for next-generation communication systems
- Research and implement novel error correction techniques for scalable quantum systems
- Mentor junior quantum engineers and publish breakthrough research in peer-reviewed journals
Qualifications
- PhD in Quantum Computing, Theoretical Physics, or Computer Science with 5+ years industry experience
- Expertise in quantum error correction codes and fault-tolerant architectures
- Proficiency with quantum programming frameworks (Qiskit, Cirq, Q#) and high-performance computing
- Published research in quantum algorithm design or quantum information theory
- Experience with superconducting qubit systems or photonic quantum processors
- Strong background in distributed systems and high-availability architectures
- Demonstrated ability to translate theoretical concepts into scalable implementations
- Knowledge of NISQ-era limitations and 2026-era quantum technology roadmaps