Job Description
Join Nexus Labs at the forefront of technological revolution as we pioneer quantum computing solutions for 2026. We're seeking a visionary Quantum Computing Architect to design scalable quantum systems that will redefine computational boundaries. In this pivotal role, you'll collaborate with Nobel laureates and industry disruptors to build fault-tolerant quantum processors capable of solving previously unsolvable problems in cryptography, material science, and AI optimization. Our Austin R&D center offers state-of-the-art laboratories and a culture where breakthrough ideas become reality.
Why Nexus Labs? We're not just preparing for 2026—we're actively shaping it. Our quantum team operates with unprecedented autonomy and resources, including access to IBM Quantum Network and proprietary cryogenic computing infrastructure. Enjoy cutting-edge benefits including unlimited quantum research credits, flexible hybrid work arrangements, and equity in our pre-IPO quantum software subsidiary.
Responsibilities
- Design and implement fault-tolerant quantum computing architectures for enterprise-scale applications
- Develop hybrid quantum-classical algorithms targeting 2026 computational challenges
- Lead quantum error correction protocols achieving >99.9% fidelity thresholds
- Collaborate with hardware teams to optimize qubit connectivity and coherence times
- Translate complex quantum concepts into actionable technical roadmaps for cross-functional teams
- Drive quantum security initiatives resistant to 2026-era cyber threats
- Publish research in peer-reviewed quantum computing journals and conferences
Qualifications
- PhD in Quantum Physics, Computer Science, or related field (or equivalent industry experience)
- 5+ years designing quantum computing systems with demonstrated fault-tolerance implementations
- Expertise in quantum error correction codes (surface codes, color codes)
- Proficiency with quantum programming frameworks (Qiskit, Cirq, Q#)
- Published research in quantum algorithms or quantum hardware design
- Experience with superconducting qubit architectures or trapped ion systems
- Strong background in high-performance computing and parallel processing
- Ability to communicate complex quantum concepts to non-technical stakeholders