Develop and simulate methods for generating entangled resource states and encoded logic, and build robust software tools for full-stack quantum architecture simulations. Optimize simulation performance, analyze and manage results, and ensure tools and modeling frameworks work across teams and projects.
The intern will develop and optimize quantum algorithms and subroutines for fault-tolerant systems. They will also focus on compiling these algorithms to logical gate sets while incorporating architecture-aware optimizations.
Act as a bridge between Electronics and System Engineering teams to resolve PCBA technical issues and perform failure analysis. Implement corrective actions in design and test while improving overall PCBA test coverage.
Contribute to optical architecture projects by writing prototype software for simulating and controlling photonic quantum networks. Develop new approaches to photonic quantum computing and benchmark various protocols.
The intern will develop and optimize quantum algorithms and subroutines for fault-tolerant quantum systems. Responsibilities also include compiling algorithms to logical gate sets and performing quantum resource estimation.
The role involves designing and scaling a high-performance graph database to manage and control photonic quantum computing systems. You will collaborate with cross-functional teams to implement algorithms and software that ensure system reliability and performance.
Internship responsibilities can include developing methods in engineering, computer science, and data science, as well as testing and trialling solutions for lab operations. Interns will also create case studies, provide feedback, and communicate results through presentations.