Job Description
Join NextGen Labs 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 scalable quantum systems that will redefine industries. This role offers the rare opportunity to shape the future of computational science while working with cutting-edge hardware and algorithms. Our Austin-based innovation hub provides unparalleled resources for breakthrough research, including exclusive access to our quantum annealing supercomputer and partnership with MIT's Quantum Engineering Center.
As a key member of our Future Technologies Division, you'll collaborate with Nobel laureates and industry pioneers to develop fault-tolerant quantum architectures. We offer competitive equity packages, flexible hybrid work arrangements, and dedicated R&D budgets for patentable innovations. This position includes annual innovation retreats in Switzerland and access to our exclusive quantum simulation lab.
Responsibilities
- Design scalable quantum computing architectures for commercial deployment by 2026
- Develop error-correction protocols for fault-tolerant quantum systems
- Lead cross-functional teams in quantum algorithm optimization
- Collaborate with hardware engineers to integrate quantum processors with classical systems
- Research and implement novel quantum communication protocols
- Secure patents for proprietary quantum computing methodologies
- Mentor junior researchers in quantum information theory
Qualifications
- PhD in Quantum Computing, Physics, or Computer Science (or equivalent experience)
- 5+ years experience in quantum algorithm development
- Proficiency in quantum programming languages (Qiskit, Cirq, Q#)
- Published research in peer-reviewed quantum computing journals
- Expertise in quantum error correction techniques
- Experience with superconducting or photonic quantum systems
- Strong background in complexity theory and quantum information
- Track record of translating theoretical concepts to practical implementations