Peter Graham
Regular biography
Peter Graham is a Professor of Physics at Stanford University, affiliated with the Physics Department. His research is associated with the Stanford Leinweber Institute for Theoretical Physics. Graham's work focuses on theoretical physics beyond the Standard Model, including dark matter models, novel experimental proposals for discovering new physics, and the study of results from experiments such as the LHC and early universe cosmology. He is also interested in the hierarchy problem and has proposed solutions involving dynamical relaxation in the early universe. Graham is a proposer and co-PI of the Cosmic Axion Spin Precession Experiment (CASPEr) and the DM Radio experiment. He has also proposed techniques for gravitational wave detection using atom interferometry.
Scholar-generated biography
Peter W. Graham is a Professor of Physics at Stanford University, specializing in high energy theory, particle physics, cosmology, and physics beyond the standard model. His research focuses on experimental searches for dark matter, including axion and axion-like particles, and explores novel methods for detecting dark matter through cosmic and atomic experiments. Graham's work also addresses cosmological relaxation of the electroweak scale and investigates the implications of dark matter for astroparticle data and gravitational wave detection. His contributions span theoretical and experimental approaches to fundamental physics, particularly in the context of new observables for direct detection of dark matter and the development of advanced atomic sensors for gravitational wave detection.