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Dynamic deformation of polycrystalline metals under impact

The project aims to develop a physics-based crystal plasticity model for predicting the dynamic deformation of polycrystalline metals under the high-strain-rate and shock loading co more...

Supervisor(s): Shen, Luming (Associate Professor)

Direct Epitaxy of All Inorganic Halide Perovskites for X-ray Detectors

This project aims to develop high-performance x-ray detectors based epitaxially grown halide perovskite single crystal fims. more...

Supervisor(s): Zheng, Rongkun (Associate Professor), Li, Feng (Dr)

Using computer simulations to design better printable solar cells

The ability to print efficient, stable and cheap solar cells near ambient conditions would revolutionise our transition to renewable energy.  Metal halide perovskites have more...

Supervisor(s): Widmer-Cooper, Asaph (Dr)

Computational study of the structure and dynamics of supercooled liquids

Amorphous or glassy solids represent one of the last great challenges for materials science, chemical physics and condensed matter physics. These important materials present us with more...

Supervisor(s): Harrowell, Peter (Professor), Hudson, Toby (Dr)

PET imaging of glioma in a TSPO knockout model

Glioblastoma is the most frequent primary brain tumour and the most malignant glial neoplasm (glioma) with predominantly astrocytic differentiation. Due to their invasive nature, gl more...

Supervisor(s): Graeber, Manuel (Professor), Banati, Richard (Professor)

Molecular dynamics simulations of ion channels and transporters

Understanding the function of ion channels and transporters using molecular dynamics simulations more...

Supervisor(s): Kuyucak, Serdar (Associate Professor)

Modelling the hardening behaviour of Magnesium alloys using 3D disloation dynamic simulations

This project aims to develop a 3D dislocation dynamics model to understand the hardening mechanisms at play during the deformation alloys containing precipitates more...

Supervisor(s): Proust, Gwenaelle (Dr)

Ground-state cooling and high-fidelity detection of large ion crystals in a Penning trap for quantum simulations

The understanding of the dynamics of many-body quantum systems is one of the most challenging problems in physics today. Advancing our knowledge of these systems can lead to signifi more...

Supervisor(s): Wolf, Robert (Dr), Biercuk, Michael J. (Professor)