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We have 29 Solid State Physics (external) PhD Projects, Programmes & Scholarships

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Solid State Physics (external) PhD Projects, Programmes & Scholarships

We have 29 Solid State Physics (external) PhD Projects, Programmes & Scholarships

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

Table-top cryogenic Lasers

Supervisory Team: Jacob Mackenzie, Andy Clarkson. Project description. Cryogenically cooled lasers have proven themselves a platform-architecture for future high-energy and high-average power systems in large-scale-facilities institutes across the world. Read more

Advanced crystal-film engineering

Supervisory Team: Jacob Mackenzie. Project description. Novel crystalline photonic devices offer exciting opportunities for creating efficient lasers and manipulating the properties of light. Read more

Fully funded PhD studentship: Transforming respiratory care at the bedside using machine learning assisted on-chip vibrational spectroscopy

Supervisory Team. Prof. Senthil Murugan Ganapathy. Project description. Acute respiratory distress syndrome (ARDS), a widespread respiratory condition affecting all ages, causes respiratory failure due to inflamed, fluid-filled lungs hindering gas exchange. Read more

Photonics for Net Zero Enabled by Patternable Boron-Phosphide Polymers

The manipulation of light in optoelectronic devices is a cornerstone for the delivery of Net Zero, for example in low-energy optical computing (silicon-photonics) and green hydrogen generation from water (photocatalysis). Read more

Photo-chemical adaptive integrated circuits for next generation neuromorphic computing

Neuromorphic computing, i.e., an approach to information processing inspired in basic morphology and working principles of the brain, is a rapidly growing area of research due to the availability of high-speed hardware and need for artificial intelligence (AI) systems across a wide range of applications. Read more

PhD in Beam-Steering Programmable Metasurfaces for Microwave Devices

Project Overview. We are seeking exceptional candidates with a passion for interdisciplinary research in the fields of Physics, Engineering, and Material Science for a fully funded 3.5-year PhD research project. Read more

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

Microbial Induced Electrochemistry at the Local Site and Single Cell Level

Microbial Induced Corrosion (MIC) is a serious economic problem with an estimate worldwide cost of $113 Bn every year. MIC impacts a very wide range of industries, from power plants to construction, and even the health of humans with implants or protheses. Read more

Industrial PhD project: Design and build of novel scientific instrumentation

X-ray Photoelectron Spectroscopy (XPS) is the primary technique employed to determine the chemical composition and chemical state of material surfaces, with an analysis depth of approximately 5 nm. Read more

https://www.jobs.ac.uk/job/DEZ391

Supervisory Team:   Dr Yongmin Jung and Dr Ali Masoudi. Project description. This is an unparallel opportunity to redefine the landscape of distributed sensing systems and contribute to groundbreaking developments in healthcare, environment monitoring, and beyond. Read more

Revolutionizing Laser Technology through Multicore Fibre Innovation

Supervisory Team: Dr Yongmin Jung and Dr Sijing Liang. Project description. Embark on a transformative journey at the forefront of laser technology with our ground-breaking PhD opportunity, titled “Revolutionizing laser technology through multicore fibre innovation”. Read more

High-power Fibre Lasers for Visible Wavelengths

Supervisory Team: Prof Jayanta Sahu and Prof Johan Nilsson. Project description. Visible lasers are indispensable for applications such as display, underwater communication, microscopy, bio-photonics, optical storage, and materials processing. Read more

Next Generation Silicon Photonic Modulators

Supervisory Team: Prof David Thomson and Dr Weiwei Zhang . Project Description. This project will focus on research into the next generation of optical data communication technology enabling key applications such as high-performance computing and artificial intelligence to thrive. . Read more

2-micron integrated photonics

Supervisory Team: Jacob Mackenzie, Goran Mashanovich, Colin Mitchell. Project description. Integrated photonics has come of age, enabled by nano-fabrication technologies. Read more

Phased array fibre lasers with machine learning

Supervisory Team: Prof Johan Nilsson, Dr William Kerridge-Johns. Project description. This project combines state of the art optical fibre laser amplifiers with machine learning control to produce next-generation lasers. Read more

Mid-infrared Laser Amplifiers for Tomographic Imaging of Chemical Species in Gas Turbine Combustion and Green Aviation

Supervisory Team: Prof Johan Nilsson, Prof Jayanta Sahu . Project description. University of Southampton is seeking a committed candidate for laser research towards green aviation and net-zero carbon emission from gas turbines within the LITECS programme. Read more

PhD Studentship in the atomistic dynamics of mechanochemical reactivity

Applications are sought for a fully funded 3.5-year PhD position in the group of Dr Adam Michalchuk in the School of Chemistry at the University of Birmingham to start Oct. Read more

Hybrid Technologies for Battery Thermal Management Using Smart Materials

Electric vehicles (EVs) are powered by lithium-ion batteries (LIBs) with many advantages such as high specific energy, long cycle life, wide range of operating temperature, and low self-discharge rates. Read more

Point Defect Characterization in Energy Materials

Vacancy related point defects are of fundamental importance for a diverse range of energy materials, from fuel cell materials to fusion reactor wall materials. Read more

Characterization of Technologically Relevant Point Defects in Piezoelectric Oxide Materials

Oxide materials with a perovskite, or related, structure remain of primary importance as piezoelectric materials. They are used in applications ranging from medical ultrasound transducers to fuel injectors for diesel engines. Read more

Characterization of Vacancy-Related Point Defects in Nuclear Materials

The importance of both Fusion and Fission Nuclear Energy Technologies is growing. The materials used must be resilient to high levels of typically neutron and gamma-ray radiation. Read more
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