Job Description
Join Nexus Quantum Solutions at the forefront of computational revolution. We're seeking a visionary Quantum Computing Architect to design next-generation quantum systems that will redefine 2026's technological landscape. In this pivotal role, you'll architect hybrid quantum-classical frameworks, pioneer error-correction methodologies, and lead breakthrough research in quantum algorithms for cryptography, optimization, and AI acceleration.
You'll collaborate with Nobel laureates, publish groundbreaking research in Nature Physics, and directly influence quantum standards being adopted by Fortune 500 companies. Our state-of-the-art lab features 128-qubit processors, dilution refrigerators reaching 10mK, and exclusive partnerships with NASA and MIT. This is your chance to shape the quantum century.
Responsibilities
- Design scalable quantum architectures leveraging superconducting qubits and photonic systems
- Develop hybrid quantum-classical algorithms for enterprise-scale optimization problems
- Implement fault-tolerant quantum error correction protocols achieving 99.9% fidelity
- Lead quantum hardware-software co-design for real-world applications in finance and logistics
- Establish quantum security protocols resistant to future cryptographic threats
- Mentor a cross-disciplinary team of quantum physicists and software engineers
- Drive patent development for proprietary quantum gate operations
Qualifications
- PhD in Quantum Computing, Physics, or Computer Science (or equivalent experience)
- 5+ years hands-on experience with quantum programming (Q#, Qiskit, Cirq)
- Published research in quantum algorithms or quantum error correction
- Expertise in quantum hardware architectures (superconducting, trapped ion, photonic)
- Deep understanding of quantum supremacy benchmarks and NISQ limitations
- Proven ability to translate theoretical quantum models into practical implementations
- Experience with cryogenic quantum systems and dilution refrigerator operations
- Strong background in topological quantum computing and anyon braiding