Job Description
Join Nexus Quantum Labs at the forefront of computational revolution as we pioneer quantum solutions for 2026 and beyond. We're seeking visionary Quantum Computing Architects to design next-generation quantum systems that will redefine industries from pharmaceuticals to cryptography. Our cutting-edge research lab in San Francisco offers unparalleled resources to translate theoretical breakthroughs into real-world applications. You'll collaborate with Nobel laureates and industry disruptors in an environment where innovation isn't just encouraged—it's demanded.
We offer competitive equity packages, flexible work arrangements, and access to our state-of-the-art quantum research facilities. Be part of the team that's building the computational infrastructure for humanity's next technological leap.
Responsibilities
- Design scalable quantum algorithms and error-correction frameworks for practical deployment
- Lead cross-functional teams in developing quantum-classical hybrid computing architectures
- Translate complex quantum concepts into actionable technical specifications for engineering teams
- Research and evaluate emerging quantum hardware platforms for commercial viability
- Develop quantum security protocols resistant to future cryptographic threats
- Create technical roadmaps for quantum computing integration into existing enterprise systems
- Author whitepapers and patents advancing quantum computing methodologies
Qualifications
- PhD in Quantum Physics, Computer Science, or related field with 5+ years industry experience
- Proven expertise in quantum algorithm design (Shor's, Grover's, VQE, QAOA)
- Deep understanding of quantum error correction codes and fault-tolerant architectures
- Proficiency in quantum programming languages (Q#, Qiskit, Cirq)
- Experience with quantum hardware platforms (IBM Quantum, Rigetti, IonQ)
- Strong background in high-performance computing and parallel processing
- Demonstrated ability to translate complex quantum concepts for non-technical stakeholders
- Published research in peer-reviewed quantum computing journals preferred