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We have 17 Solid State Physics (magnetic materials) PhD Projects, Programmes & Scholarships

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Solid State Physics (magnetic materials) PhD Projects, Programmes & Scholarships

We have 17 Solid State Physics (magnetic materials) PhD Projects, Programmes & Scholarships

2D magnetic materials: probing magneto-electronic coupling

2D magnets are an exciting area of research for exploring fundamental magnetic phenomena and with the potential for new electronic and optoelectronic functionalities [1]. Read more

New concepts and advanced materials for quantum nanophotonics

  Research Group: Inorganic Semiconductors
After the discovery of two-dimensional (2D) atomically thin carbon crystal, graphene, a very large family of layered 2D “van der Waals materials” came to light, called after the van der Waals forces holding together their atomic planes. Read more

Design magnetoelectric nanoparticles with outstanding physical property for biomedical applications

Magnetoelectric nanoparticles (MENP) are multiferroic materials with magnetic and electric properties coupled together. The coupling allows direct control of ferroelectricity using an external magnetic field or vice-versa. Read more

Interacting Electrons and Spin-Orbit Coupling

Experimental condensed matter physics PhD looking into the electronic structure of quantum materials via photoemission experiments performed at international synchrotron facilities. Read more

Electronic properties of ferroelectric domain walls

Perovskite oxides, materials with the simple chemical formula ABO3 (where A and B are positively charged cations), can exhibit a vast range of phenomena, including ferroelectricity, high-temperature superconductivity, and magnetism. Read more

Straining the Electronic Structure

Experimental condensed matter physics PhD based around the development of a device to apply uniaxial strain during photoemission experiments, and its use to tune the electronic structure of quantum materials. Read more
Last chance to apply

(University of Manchester - University of Tokyo Dual Award) Light- and Pressure-Controllable Magnets

This project tackles the complex interplay between light, pressure and magnetism, which lies at the heart of modern materials science, through the exploration of light- and pressure-responsive molecular magnets. Read more

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