Lead the charge in designing advanced mechanical systems for cutting-edge accelerator projects. Collaborate with a talented team to create critical components while demonstrating initiative and technical expertise in a dynamic research environment.
Transform the future of scientific instrumentation by leading digital ASIC design for cutting-edge projects in high-energy physics and advanced detection systems. Collaborate with multidisciplinary teams to innovate and enhance microelectronics technology.
Optimize AI methodologies for interpreting complex crystallographic data, enabling groundbreaking discoveries in structural biology and protein dynamics. Collaborate with diverse teams to enhance research through innovative computational analysis.
Lead the charge in groundbreaking research on photon- and electron-driven chemistry, focusing on EUV lithography. Collaborate with top experts using advanced spectroscopic methods to unveil insights critical to microelectronics innovation.
Engage in cutting-edge research in gluon saturation physics at the Electron-Ion Collider. Develop event generators and perform simulations to analyze detector capabilities and enhance the scientific understanding of QCD phenomena.