Job Description
Join Nexus Future Labs at the forefront of technological evolution. We're seeking a visionary Quantum Computing Architect to design and implement next-generation systems that will define 2026's digital landscape. This role bridges theoretical quantum physics with practical engineering solutions, requiring deep expertise in both classical and quantum computing paradigms. You'll lead cross-disciplinary teams to develop fault-tolerant quantum processors, hybrid quantum-classical algorithms, and secure quantum communication protocols. Our Austin-based innovation hub offers unparalleled resources, including access to quantum annealing hardware and a collaborative environment with Nobel laureates and industry pioneers.
We offer competitive compensation, comprehensive benefits, and flexible work arrangements. As part of our commitment to 2026-readiness, you'll receive exclusive training in emerging technologies like neuromorphic computing and photonic processors. If you're passionate about solving humanity's most complex challenges through quantum innovation, this is your moment to shape the future.
Responsibilities
- Design scalable quantum computing architectures optimized for specific industry applications (pharma, logistics, cryptography)
- Develop hybrid quantum-classical algorithms that leverage quantum advantage for real-world problem-solving
- Lead implementation of quantum error correction codes to achieve fault-tolerant computation
- Collaborate with hardware teams to define quantum processor specifications and integration protocols
- Create security frameworks for quantum-resistant encryption and quantum-safe communication channels
- Mentor junior engineers and publish breakthrough research in peer-reviewed quantum computing journals
- Stay ahead of quantum computing evolution by tracking advancements in qubit stability and coherence times
Qualifications
- PhD in Quantum Computing, Physics, or Computer Science with 5+ years of quantum algorithm development experience
- Expertise in quantum programming languages (Q#, Qiskit, Cirq) and quantum circuit optimization techniques
- Proven track record of implementing quantum solutions for enterprise-level problems
- Deep understanding of quantum error correction codes and fault-tolerant architectures
- Familiarity with quantum hardware platforms (superconducting qubits, ion traps, photonics)
- Strong background in classical high-performance computing and distributed systems
- Certification in quantum security protocols and quantum-safe cryptography standards
- Published research in top-tier quantum computing conferences (QIP, IEEE Quantum Week)