Job Description
Join the forefront of technological evolution at Nexus Dynamics Inc. as we pioneer quantum computing infrastructure for 2026 and beyond. We're seeking a visionary Quantum Infrastructure Engineer to architect and deploy next-generation quantum systems that will redefine computational boundaries. This role offers unparalleled opportunities to shape the future of enterprise-scale quantum adoption while working with Nobel Prize-winning researchers and cutting-edge hardware. Our Austin R&D hub features state-of-the-art labs and collaborative innovation spaces where you'll develop fault-tolerant quantum architectures, optimize quantum-classical hybrid workflows, and contribute to breakthroughs in quantum error correction.
As a key member of our Quantum Futures Division, you'll influence strategic roadmaps for quantum adoption across finance, pharmaceuticals, and logistics sectors. We offer competitive equity packages, continuous learning stipends, and flexible hybrid work arrangements. The ideal candidate thrives at the intersection of theoretical physics and practical engineering, with a passion for solving humanity's most complex challenges through quantum innovation.
Responsibilities
- Design and implement fault-tolerant quantum computing architectures for enterprise-scale deployment
- Develop quantum-classical hybrid workflows optimizing performance across 2026-era hardware
- Lead quantum error correction protocol development for 10,000+ qubit systems
- Collaborate with hardware teams to calibrate quantum processors and optimize cryogenic systems
- Architect secure quantum communication networks leveraging post-quantum cryptography
- Develop simulation frameworks for quantum algorithm optimization on hybrid computing platforms
- Create technical roadmaps for quantum infrastructure integration with classical cloud environments
- Mentor junior engineers in quantum engineering best practices and emerging standards
Qualifications
- PhD in Quantum Physics, Electrical Engineering, or Computer Science (MS with 5+ years experience considered)
- Expertise in quantum error correction codes (surface, color, LDPC codes) and fault-tolerant architectures
- Proficiency in quantum programming languages (Q#, Qiskit, Cirq) and quantum circuit optimization
- Experience with superconducting qubit systems, cryogenic engineering, or quantum photonics
- Strong background in distributed systems, high-performance computing, and cloud infrastructure
- Published research in quantum computing or related fields (IEEE, Nature, arXiv)
- Familiarity with NIS2 compliance frameworks and quantum security protocols
- Demonstrated ability to translate theoretical quantum concepts into scalable engineering solutions