
معرفی
Emanuel Gull is an Assistant Professor in the Department of Physics at the University of Michigan, Ann Arbor. His research focuses on quantum many-body theory, strongly correlated electron systems, and computational methods for condensed matter physics. He has held academic positions including a postdoc at Columbia University and a junior group leader role at the Max Planck Institute. His work emphasizes numerical methods like quantum Monte Carlo, dynamical mean-field theory (DMFT), and tensor network approaches.
Education: PhD in Theoretical Physics from ETH Zurich (2008), undergraduate studies at ETH Zurich (2005). His research interests include Hubbard model simulations, analytic continuation of Green's functions, and developing computational frameworks like Green/WeakCoupling for ab initio many-body calculations.
Key achievements include the 2013 Nevill Mott SCES Prize for contributions to correlated electron systems, a DOE Early Career Award (2013), and a Sloan Fellowship (2014). He has pioneered methods for non-equilibrium dynamics, steady-state quantum systems, and integrating high-performance computing into materials science.
Grants include NSF-BSF funding for tensor train methods in quantum impurity solvers. His work often involves collaborations on frameworks like TRIQS and Elements for embedding theories. Current research explores quantum-centric supercomputing, excitonic phenomena in van der Waals magnets, and symmetry-adapted algorithms for large-scale simulations.



