Job Description
Join Nexus Labs at the forefront of technological evolution as we pioneer quantum computing solutions for 2026 and beyond. We're seeking a visionary Quantum Computing Architect to design next-gen systems that will redefine computational boundaries. This role offers unparalleled opportunities to shape the future of AI, cryptography, and materials science within a culture of relentless innovation.
As a key member of our Future Technologies Division, you'll collaborate with Nobel laureates and industry disruptors to transform theoretical quantum models into scalable industrial applications. Our Austin headquarters features state-of-the-art quantum labs and a competitive benefits package including equity in our pre-IPO growth stage company.
Responsibilities
- Design and implement fault-tolerant quantum computing architectures for enterprise-scale applications
- Lead R&D initiatives in quantum error correction and qubit stabilization techniques
- Develop hybrid quantum-classical computing frameworks for complex optimization problems
- Collaborate with hardware teams to integrate quantum processors with classical supercomputing infrastructure
- Establish quantum security protocols for next-gen cryptographic systems
- Drive patent development for proprietary quantum algorithms and architectures
- Mentor cross-functional teams in quantum computing principles and applications
Qualifications
- PhD in Quantum Physics, Computer Science, or related field with 5+ years industry experience
- Proven track record in quantum algorithm development and quantum circuit optimization
- Expertise in quantum error correction codes and fault-tolerant computing frameworks
- Strong programming skills in Python, Q#, and quantum simulation platforms (Qiskit, Cirq)
- Deep understanding of quantum hardware architectures (superconducting, trapped ion, photonic)
- Published research in peer-reviewed quantum computing journals or conferences
- Experience leading technical teams in high-stakes R&D environments
- Knowledge of NISQ-era limitations and mitigation strategies