Unlock potential by designing large-scale simulations of nonlinear thermodynamic computers. Collaborate in groundbreaking research to enhance machine learning efficiency while exploring the physics of their operation and performance.
Develop large-scale simulations of thermodynamic computers, exploring their potential for efficient machine learning and energy savings. Collaborate with experts to benchmark performance and publish findings in scientific literature.
Join a team that engineers high-performance network platforms for advanced scientific computing. Collaborate on network automation, observability, and AI-driven operations, enhancing connectivity for thousands of users in HPC environments.
Join a team that explores tropical forest dynamics through ecological modeling and data analysis. Contribute to groundbreaking research aimed at understanding forest responses to climate change while enhancing Earth system models.
Lead strategic IT initiatives for scientific computing and cybersecurity, supporting over 40 beamlines. Supervise IT staff, guide infrastructure modernization, and enhance operational efficiency to enable world-class research and discovery.