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Peterson). This project combines both theory and experiment. "Geometric-flow across diffraction patterns in 4D scanning transmission electron microscopy” (with Dr Scott Findlay and Dr Timothy Peterson
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to explore the elastic tuning of collective states in Kagome quantum materials. The successful candidate will employ high-resolution X-ray diffraction in combination with electrical resistivity
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well as inclusive and diffractive dijet or heavy-meson production in ultra-peripheral collisions. In addition, the project will involve the development of a dedicated numerical code to implement these calculations
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produced and will be derivatized with As/Sb oxyanions, in an attempt to capture reaction intermediates. Diffraction data will be collected in synchrotron laboratories (ESRF, DESY and ALBA (single proposals
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X-ray diffraction techniques Participation in developing dynamic compression experiments at the HED Science Instrument at European XFEL, including shock diagnostics (SOP and VISAR) Preparation of PhD
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3D X-ray diffraction (3DXRD). Each of these in situ measurements are already available at specific synchrotron beamlines. However, they have never been applied on microbatteries or in a correlative
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Your Job: Many technologically important material properties are closely related to disorder and short-range structural correlations. Diffuse scattering observed in a diffraction experiment on
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backgrounds (IPAG, LaMPEA, LAPCOS, MONARIS, LPG). Availability of technical resources: LPG/OSUNA: Hyperspectral platform, Raman and FTIR spectroscopy, geochemistry platform IMN: X-ray diffraction (XRD) and
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Dr Alireza Sadri) "Geometric-flow across diffraction patterns in 4D scanning transmission electron microscopy" (with Dr Timothy Petersen and Prof Michael Morgan) "Prospects for atomic-resolution
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include Atomic, Molecular and Optical (AMO) science, time-resolved X-ray diffraction and spectroscopy and ultrafast optical spectroscopy. Junior-scientist / PhD-student – Laser physics and applications (308