Exploiting XMaS Studies of Highly Correlated Electron Systems, Real Surfaces and Biomaterials
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AI plain-English summaryA synchrotron beamline in Grenoble, France, is keeping its doors open for a third five-year period to serve a dozen UK research groups who need its specialised X-ray diffraction capabilities. The XMaS beamline at the European Synchrotron Radiation Facility (ESRF) offers unique sample environments—particularly low temperatures, high magnetic fields, and polarisation analysis—that are not available at the UK’s newer Diamond Light Source. These tools allow researchers to probe the electronic structure of highly correlated electron systems: magnets, superconductors, and colossal magnetoresistance compounds. Without XMaS, these UK groups would lose access to a mature facility that has already delivered highlighted work on charge ordering and electronic structure. The beamline also supports non-resonant scattering studies of real surfaces—from quantum dots to self-organised arrays—and applied work on electrolysis, electrocatalysis, corrosion of cultural heritage objects, and biomaterials such as strain in dentine and scattering signatures of biological tissue. This is primarily a facility-support grant, not a single discovery project. Its impact is enabling: it sustains internationally competitive fundamental science across condensed matter physics, chemistry, and materials science. A joint postdoctoral appointment with Diamond will transfer know-how to the UK facility, ensuring continuity for the community.
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