Job Description
Join Nexus Quantum Solutions at the forefront of technological revolution as we pioneer quantum computing solutions for 2026 and beyond. We seek a visionary Quantum Computing Architect to design and implement next-gen quantum systems that will redefine computational boundaries. This role offers unparalleled opportunity to shape the future of enterprise quantum applications in a dynamic, R&D-driven environment.
Our Austin headquarters features state-of-the-art quantum labs and collaborative innovation spaces. You'll work alongside Nobel Prize-winning physicists and MIT-trained engineers to develop fault-tolerant quantum processors, hybrid quantum-classical algorithms, and secure quantum communication protocols. We offer competitive equity packages, flexible work arrangements, and dedicated quantum research budgets.
Responsibilities
- Design scalable quantum architectures for enterprise applications in cryptography, optimization, and machine learning
- Lead development of quantum error correction protocols achieving fault-tolerant thresholds
- Collaborate with hardware teams to integrate superconducting qubits with classical control systems
- Develop hybrid quantum-classical algorithms demonstrating quantum advantage for real-world problems
- Establish quantum security frameworks for next-generation cryptographic systems
- Drive research initiatives in topological quantum computing and photonic quantum networks
- Mentor cross-functional teams on quantum principles and implementation strategies
Qualifications
- PhD in Quantum Physics, Computer Science, or related field with 5+ years industry experience
- Proven expertise in quantum algorithm design and quantum circuit optimization
- Deep understanding of quantum error correction codes (surface, color, LDPC)
- Proficiency in quantum programming frameworks (Qiskit, Cirq, Q#) and high-performance simulation
- Experience with superconducting qubit manipulation and cryogenic system integration
- Published research in peer-reviewed quantum computing journals or conferences
- Strong background in topological quantum computing and quantum annealing