Job Description
Join Nexus Quantum Labs at the forefront of computational revolution as we pioneer quantum solutions for 2026 and beyond. We seek a visionary Quantum Computing Architect to design and implement next-generation quantum systems that will redefine industries from finance to healthcare. This role offers unparalleled opportunity to shape the future of technology in an environment that blends cutting-edge research with real-world application.
As a key member of our Innovation Division, you'll collaborate with Nobel laureates, quantum physicists, and software engineers to build scalable quantum architectures. Our state-of-the-art facility in San Francisco's tech hub provides resources to accelerate breakthroughs, while our commitment to work-life balance ensures you can thrive both professionally and personally.
Responsibilities
- Design and implement scalable quantum computing architectures for enterprise applications
- Develop error-correction protocols to maintain quantum coherence in large-scale systems
- Lead cross-functional teams in translating theoretical quantum algorithms into practical implementations
- Optimize quantum circuit designs for maximum efficiency and minimal resource consumption
- Establish security frameworks for quantum-resistant cryptography systems
- Conduct performance benchmarking against classical computing paradigms
- Present quantum computing roadmaps to C-suite executives and key stakeholders
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
- Proficiency in quantum programming frameworks (Qiskit, Cirq, Q#) and classical languages (Python, C++)
- Published research in peer-reviewed quantum computing journals
- Experience with cloud quantum platforms (IBM Quantum, Amazon Braket, Azure Quantum)
- Demonstrated ability to lead complex technical projects from conception to deployment
- Strong background in high-performance computing and distributed systems
- Understanding of quantum machine learning applications and NISQ-era constraints