Job Description
Shape the technological frontier of 2026 at Nexus Future Labs! We're seeking a visionary Quantum Computing Architect to revolutionize computational paradigms. Join our elite R&D team at the intersection of quantum mechanics and next-gen AI, where you'll design scalable quantum systems that solve previously unsolvable challenges. This role offers unparalleled opportunities to pioneer breakthroughs in cryptography, materials science, and computational biology while working alongside Nobel laureates and industry pioneers.
At Nexus Future Labs, we thrive on audacious innovation. You'll lead cross-disciplinary projects in our state-of-the-art Austin facility, collaborate with global research institutions, and contribute to open-source quantum frameworks that will define the decade. If you're ready to build the computational infrastructure for humanity's next chapter, this is your moment.
Responsibilities
- Architect quantum computing systems with 1000+ qubit scalability for 2026-era applications
- Design error-correction protocols and quantum algorithms for real-world industrial deployment
- Lead cross-functional teams integrating quantum processors with classical AI/ML pipelines
- Develop patent-pending quantum hardware-software interfaces for enterprise solutions
- Drive research initiatives in quantum supremacy applications for healthcare and climate modeling
- Mentor quantum engineers and publish breakthrough findings in Nature/Science journals
- Establish strategic partnerships with quantum hardware manufacturers and cloud providers
Qualifications
- PhD in Quantum Physics, Computer Science, or Electrical Engineering with 5+ years quantum computing experience
- Proven expertise in quantum algorithm design and quantum circuit optimization
- Mastery of quantum programming languages (Q#, Qiskit, Cirq) and simulation frameworks
- Publication record in top-tier quantum computing conferences (QIP, QCE) or journals
- Experience with cryogenic quantum systems and superconducting qubit architectures
- Strong background in distributed computing and high-performance computing (HPC)
- Deep understanding of quantum error correction and fault-tolerant computing principles