Job Description
Join NexaTech Innovations at the forefront of technological revolution as we pioneer quantum solutions for 2026 and beyond. We seek a visionary Quantum Computing Architect to design next-gen systems that will redefine computational boundaries. In this pivotal role, you'll architect fault-tolerant quantum processors, develop hybrid quantum-classical frameworks, and lead R&D initiatives targeting breakthrough applications in cryptography, materials science, and AI optimization. Collaborate with Nobel laureates and industry pioneers in our state-of-the-art Austin lab, where your innovations will shape the quantum landscape.
Our team operates at the intersection of theoretical physics and practical engineering, offering unparalleled resources to transform ambitious concepts into reality. You'll mentor quantum engineers, publish cutting-edge research, and contribute to industry standards that will define the quantum era. This is your opportunity to build the computational infrastructure that powers humanity's next technological leap.
Responsibilities
- Architect scalable quantum computing systems with 1000+ qubit capabilities
- Design error-correction protocols achieving <10^-9 logical error rates
- Develop hybrid quantum-classical algorithms for industrial optimization
- Lead quantum security frameworks for post-quantum cryptography standards
- Collaborate with hardware teams to integrate photonic and superconducting qubits
- Validate quantum solutions through simulation and prototype testing
- Publish 3+ peer-reviewed papers annually in top-tier journals
- Mentor cross-functional quantum engineering teams
Qualifications
- PhD in Quantum Physics, Computer Science, or Electrical Engineering
- 5+ years experience in quantum algorithm development or quantum hardware design
- Expertise in quantum error correction and fault-tolerant architectures
- Proficiency with quantum programming languages (Q#, Qiskit, Cirq)
- Published research in quantum computing or related fields
- Experience with superconducting qubit systems or photonic quantum processors
- Strong background in high-performance computing and parallel programming
- Proven ability to translate theoretical concepts into practical implementations