Job Description
Join QuantumLeap Technologies at the forefront of the 2026 quantum revolution. We're seeking a visionary Quantum Computing Architect to design next-gen quantum systems that will redefine computational boundaries. You'll lead the development of fault-tolerant quantum processors while pioneering hybrid quantum-classical architectures for enterprise applications. This role sits at the intersection of theoretical physics and cutting-edge engineering, offering unparalleled opportunities to shape the future of computing.
Our ideal candidate thrives in interdisciplinary environments, translating complex quantum algorithms into scalable hardware solutions. You'll collaborate with Nobel laureates, AI researchers, and industry partners to build quantum systems capable of solving previously intractable problems in cryptography, material science, and drug discovery.
Responsibilities
- Design and implement fault-tolerant quantum processor architectures for 2026-era applications
- Develop hybrid quantum-classical computing frameworks for enterprise deployment
- Lead R&D initiatives in quantum error correction and qubit stabilization
- Collaborate with AI teams to integrate quantum acceleration into machine learning pipelines
- Establish quantum security protocols for next-gen cryptographic systems
- Present quantum computing roadmaps to C-suite executives and strategic partners
- Mentor junior quantum engineers in advanced quantum physics principles
Qualifications
- PhD in Quantum Physics, Computer Engineering, or related field (MS with exceptional experience)
- 5+ years in quantum computing hardware/software architecture
- Published research in top-tier quantum computing journals (Nature, Science, etc.)
- Expertise in quantum error correction and fault-tolerant design
- Proficiency with quantum programming languages (Q#, Quil, Cirq)
- Experience with superconducting or photonic quantum systems
- Demonstrated ability to translate theoretical models into scalable prototypes
- Strong background in high-performance computing architectures