
Advanced Imaging Technologies and Instrumentation Development
Explore cutting-edge equipment and techniques for high-resolution imaging, including time-resolved correlated imaging, precision stage design, and novel detectors. Discover disruptive instrument projects for electron and X-ray imaging applications.
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Presentation Transcript
Time resolved correlated imaging
Instrumentation development for Correlated Imaging Define new imaging modes for light elements and radiation sensitive samples Precision x,y,z stage design across instrumentation New sample environments close to in vitro Quantitative imaging and spectroscopy Multimodal high resolution imaging with high phase sensitivity New detectors Cryostage transfer and correlation of Instruments for different radiations Time resolved electron optical columns and novel Cc correction
The Franklin Factor of 10 From mm to pm & From s to ns In Vitro cells for all radiations (molecular movies) Improved phase sensitivity (fewer particles for SPA) Structures below 50kDa Integrated Imaging of Structure, Chemistry and Mass
Disruptive Instrument Development; Core Projects EM. Ruska Knoll Optical. BioCOP Detectors. Optimised 100kV direct detector for electrons (with SB) High speed optical camera (108 fps)
Disruptive Instrument Development; External Projects EM (RFI, Daresbury, Liverpool). X-Ray. (RFI, Southampton) Fast ( s) soft X-Ray and EUV imaging Relativistic Ultrafast Electron Diffraction and Imaging 3.5MV, fs timing, nm resolution. Liquid cells (RFI, Manchester, UCL) Graphene based static and flow cells for electron and X-Ray imaging