Job Description
Join Nexus Dynamics at the forefront of technological evolution as we pioneer the next generation of quantum computing infrastructure. We seek a visionary Quantum Infrastructure Architect to design, implement, and optimize next-gen systems that will redefine computational capabilities by 2026. This role demands a blend of deep technical expertise and strategic foresight to build scalable, secure, and high-performance quantum ecosystems.
As a key member of our Future Systems Division, you will collaborate with Nobel laureates, quantum physicists, and software engineers to translate theoretical breakthroughs into tangible infrastructure solutions. We offer unparalleled resources, including access to our state-of-the-art Quantum Neural Lab and collaboration with leading research institutions worldwide.
Responsibilities
- Design and deploy quantum-classical hybrid architectures for enterprise-scale applications
- Lead integration of quantum processors with classical supercomputing systems
- Develop error-correction frameworks to achieve fault-tolerant quantum computing
- Architect secure quantum communication networks using quantum key distribution (QKD)
- Create scalable quantum cloud infrastructure with multi-tenancy support
- Optimize quantum algorithms for hardware-specific constraints
- Establish quantum security protocols for next-gen cryptographic systems
- Mentor cross-functional teams in quantum-computing best practices
Qualifications
- PhD in Quantum Physics, Computer Engineering, or related field (or equivalent experience)
- 8+ years in high-performance computing architecture with quantum exposure
- Expertise in quantum algorithms (Shor's, Grover's, VQE) and error correction codes
- Proficiency in quantum programming languages (Qiskit, Cirq, Q#)
- Deep understanding of quantum hardware architectures (superconducting, ion-trap, photonic)
- Experience with hybrid cloud environments (AWS, Azure, GCP) at scale
- Published research in quantum computing or quantum information theory
- Strong background in cryogenic systems and quantum control electronics