Job Description
We are at the forefront of the technological renaissance, pioneering solutions that blur the line between classical computation and quantum supremacy. As we look toward the future of 2026 and beyond, we are seeking a visionary Lead Quantum AI Architect to design the next generation of intelligent systems.
In this pivotal role, you will bridge the gap between theoretical physics and practical machine learning, leveraging quantum computing to solve problems deemed impossible by classical architectures. You will work in a collaborative, high-performance environment that values innovation, intellectual curiosity, and excellence.
Why Join Us?
- Future-Proof Career: Work on technology that will define the next decade.
- Elite Team: Collaborate with world-class researchers and engineers.
- Competitive Compensation: Base salary plus equity in a high-growth unicorn.
Key Responsibilities:
Responsibilities
- Architectural Design: Design and implement scalable quantum algorithms and hybrid AI models capable of running on future-proof quantum processors.
- System Integration: Integrate quantum computing modules into existing classical machine learning pipelines to enhance performance.
- Research & Development: Stay at the bleeding edge of quantum physics advancements and translate theoretical breakthroughs into practical software architectures.
- Team Leadership: Mentor a team of talented software engineers and data scientists, fostering a culture of continuous learning and technical excellence.
- Prototyping: Build rapid prototypes to validate architectural hypotheses and demonstrate feasibility to stakeholders.
Qualifications
- Education: Ph.D. in Computer Science, Physics, Mathematics, or a related field with a focus on Quantum Mechanics or AI.
- Experience: 5+ years of professional experience in software engineering, with at least 2 years focused on AI/ML or Quantum Computing.
- Technical Skills: Proficiency in Python, C++, and frameworks such as Qiskit, Cirq, or Pennylane.
- Knowledge: Deep understanding of quantum gates, qubit superposition, and entanglement as applied to software.
- Problem Solving: Ability to tackle complex, abstract problems and translate them into concrete technical specifications.