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The Institute for Particle and Nuclear Physics is composed of three research groups.
The Particle Physics Experiments group seeks understanding of the fundamental particles of nature and the interactions governing their behaviour. In particular, we aim to explain the dominance of matter over anti-matter through the study of CP violation with the LHCb experiment: to understand the mechanisms of electroweak symmetry breaking that lead to the creation of mass, and to search for new particles at ATLAS and future colliders; to discover and characterise particle dark matter with the LUX-ZEPLIN and DarkSide-20k experiments; and to explore neutrino oscillations, and neutrinos of astrophysical origin with experiments distributed grid computing (GridPP), to store and analyse the vast quantities of data that are produced in these endeavours.
The Particle Physics Theory Group is interested in fundamental physics at all energy scales, from the hadronic binding energy scale, to the scale of present and future particle colliders, up to the energy scales of the very early universe at its first fractional second of existence. We have interest and theoretical involvement in most current and upcoming particle physics experiments, high energy colliders, and in observations made by the WMAP and Planck satellites. We pursue the very latest developments in both perturbative and nonperturbative field theory, renormalization theory, and the application of quantum field theory to other branches of physics such as turbulence theory and condensed matter systems.
The Nuclear Physics Group has a broad and diverse range of research interests aimed at understanding the properties and structure of nuclei, the origin of the chemical elements in the universe, and the way in which nuclear reactions power some of the most spectacular stellar explosions, such as novae, supernovaea and X-ray bursts. Our research is performed at world-leading oversea laboratories (TRIUMF, RIKEN, GSI, LNGS, CERN and others), using a variety of experimental techniques and state-of-the-art instrumentation developed by the group.
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Edinburgh, GBR
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, GBR
, GBR
A charitable Scottish research university teaching students and advancing research and civic work.
GBP 41064-48822 yearly / year
Full Time, Part Time, Contract
Senior
Hybrid
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