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Field
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plasma dynamics in strongly excited materials. A complementary part involves coherent diffractive imaging and holographic techniques for the spatio-temporal characterization of transient laser-induced
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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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at metal-oxide interfaces using nanosecond laser pulses and stroboscopic imaging and diffraction method to directly measure transient lattice distortions and phonon excitations. 2. Capture intermediate
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spectrometers and X-Ray Diffraction apparatus). Our laboratories are equipped with individual fume hoods allowing the secure handling of various reagents and gases, heating devices and vacuum glassware, and are
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. Numerical diffraction calculations are highly computationally intensive, so efficient parallelizable software implementations are necessary. This research will investigate and develop sophisticated algorithms
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, such as ptychography, in which we reconstruct object images from measured diffraction data. We produce coherent EUV radiation using a process called high-harmonic generation (HHG), which is an extremely
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of experimental spectroscopy or diffraction techniques such as XAS, XRD, FTIR, and XPS, of molecular modeling (MD/MC, DFT), and familiarity with basic programming (Python, MATLAB) and the use of Linux/HPC systems
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(at least 15 ECTS credits). Practical experience of experimental spectroscopy or diffraction techniques such as XAS, XRD, FTIR, and XPS, of molecular modeling (MD/MC, DFT), and familiarity with basic
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credits). Practical experience of experimental spectroscopy or diffraction techniques such as XAS, XRD, FTIR, and XPS, of molecular modeling (MD/MC, DFT), and familiarity with basic programming (Python
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the form of coatings, ablation and high-heat-flux testing rigs, and characterisation using secondary electron imaging, X-ray diffractometry, electron backscattered diffraction, transmission electron