Job Description
Join Nexus Future Labs at the forefront of technological evolution as we pioneer quantum computing solutions for 2026 and beyond. We're seeking visionary Quantum Computing Architects to design next-gen systems that will redefine computational boundaries. This role offers unparalleled opportunities to work with Nobel Prize-winning researchers and deploy breakthrough technologies in cryptography, AI optimization, and materials science.
Our state-of-the-art Quantum Research Center in San Francisco provides an environment where innovation thrives. As part of our elite Quantum Division, you'll collaborate with global leaders to develop scalable quantum algorithms, error-corrected qubit architectures, and hybrid quantum-classical frameworks. We offer competitive equity packages, flexible remote work options, and exclusive access to our quantum simulation labs.
Responsibilities
- Design and implement fault-tolerant quantum computing architectures for commercial applications
- Develop hybrid quantum-classical algorithms to solve optimization problems in logistics and finance
- Lead quantum error correction research to achieve stable qubit operations
- Collaborate with AI teams to integrate quantum processors into machine learning pipelines
- Create quantum security protocols for post-quantum cryptography systems
- Mentor junior quantum engineers and publish research in top-tier journals
- Partner with hardware teams to co-design quantum processors and control systems
Qualifications
- PhD in Quantum Physics, Computer Science, or related field with 5+ years industry experience
- Expertise in quantum algorithms (Shor's, Grover's, VQE) and quantum error correction codes
- Proficiency in quantum programming languages (Qiskit, Cirq, Q#) and simulators
- Strong background in superconducting qubit technology or ion trap systems
- Publication record in quantum computing or theoretical physics
- Experience with high-performance computing clusters and parallel programming
- Deep understanding of quantum decoherence and mitigation strategies