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Applied Physics (3d) PhD Projects, Programs & Scholarships

We have 32 Applied Physics (3d) PhD Projects, Programs & Scholarships

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  Smaller, Lighter, More Energy Efficient – using metamaterials and 3D printing to push antennas to the limits: Design and Manufacture of Broadband 3D Multilayer Metamaterials for Microwave and mm-wave Application
  Prof A P Hibbins, Prof J R Sambles
Application Deadline: 30 April 2020

Funding Type

PhD Type

Joint supervisors. Prof Alastair P Hibbins, Prof J Roy Sambles. External partner. John Davies (Thales). ***. Project objective. To develop broadband metamaterial designs for antenna and radome applications using additive manufacturing techniques.
  3D imaging technology roadmap and software tool for X-ray histology
  Research Group: Bioengineering
  Dr P Schneider
Application Deadline: 29 May 2020

Funding Type

PhD Type

Supervisor. Philipp Schneider, Philip Basford, Peter Lackie (Faculty of Medicine). Project description.
  Automated Robotic In-Process Inspection of Metal 3D Printed & Welded Components
  Dr C Macleod, Prof S.G. Pierce
Application Deadline: 30 April 2020

Funding Type

PhD Type

Traditionally 3D printing and welding of manufactured components and quality control inspection of such joints are distinctly separate processes in the supply chain, which ultimately limits productivity, throughput and increases re-work.
  Advanced microscopy for blood flow field mapping in the heart
  Dr J Taylor, Prof A Harvey
Applications accepted all year round

Funding Type

PhD Type

A PhD studentship is available in the Imaging Concepts Group at Glasgow University, developing and applying advanced optical microscopy and computational imaging techniques to measure and study the blood flow and heart function in the developing zebrafish heart.
  3D laser beam shaping
  Dr R Carter, Dr J D Shephard
Applications accepted all year round

Funding Type

PhD Type

Combining 2D beam shaping elements (including refractive and diffractive elements) with bespoke focussing optics to shape a laser beam though the entire focal volume rather than in a single focal plane.
  Application of digital holography for underwater measurements
  Dr T Thevar, Dr S S Aphale
Applications accepted all year round

Funding Type

PhD Type

Underwater digital holography is a powerful technique to study marine organisms and marine pollution (e.g. micro-plastics), marine evolution, etc.
  Advanced manufacturing processes to enable the heterogeneous integration of power electronics - Ref: CL1UF2018
  Prof C Liu
Application Deadline: 3 May 2020

Funding Type

PhD Type

Heterogeneous integration of power devices refers to the assembly of separately manufactured power semiconductors, passive components and control elements into a single package, i.e.
  Design and development of paper/responsive polymer hybrid micro-device (Advert Reference: SF19/EE/MCE/XU)
  Dr B Xu, Dr Y Li
Applications accepted all year round

Funding Type

PhD Type

Paper micro-device is a technology that is particularly well-suited for use in public health, diagnostics for resource-limited settings, veterinary medicine, testing of food and water quality, and environmental monitoring.
  Super-resolved Terahertz Microscopy for Cellular Imaging
  Dr J Bowen
Applications accepted all year round

Funding Type

PhD Type

"The goal of this research project is to develop a new terahertz microscopy technique for the imaging of live cells with a spatial resolution of better than 1 micrometre.
  Aircraft advanced rear end and empennage optimisation enhanced by anti-ice coatings and devices
  Research Group: Aerodynamics and Flight Mechanics
  Dr A Da Ronch
Application Deadline: 31 May 2020

Funding Type

PhD Type

Supervisor. Andrea Da Ronch. Co-supervisor John Shrimpton. Project description.
  EPSRC Centre for Doctoral Training in Engineered Tissues for Discovery, Industry and Medicine (LifETIME)

Funding Type

PhD Type

The CDT will train the next generation of leaders in developing in vitro tissues, sensing and diagnostics to develop humanised in vitro systems to drive better drug screening.
  Doctor of Engineering (EngD): Active 2-dimensional optical meta-surfaces (STMicroelectronics (R&D) Ltd)
  Research Group: CDT in Applied Photonics
  Prof D Reid, Dr X Chen
Application Deadline: 30 April 2020

Funding Type

PhD Type

Project Description. The market for high contrast diffractive gratings is growing rapidly as active sensing of 3D scenes becomes a dominant feature in modern consumer electronics.
  Doctor of Engineering (EngD): Answering Questions about Medical Images (Canon Medical Research Europe, Ltd)
  Research Group: CDT in Applied Photonics
  Prof D Reid, Dr F Deligianni, Dr J Dalton
Application Deadline: 30 April 2020

Funding Type

PhD Type

Visual Question Answering (VQA) [1] is the task of answering free-text questions about the content of images. For example, given an image of a room - ‘What colour is the chair standing in the corner?’ - answering this question requires joint understanding of vision, language, spatial reasoning, and common sense.
  Doctor or Engineering (EngD): Electro-optic devices for extreme LIDAR in highly dynamic environments
  Research Group: CDT in Applied Photonics
  Prof D Reid, Prof D P Hand
Application Deadline: 30 April 2020

Funding Type

PhD Type

Project Description. LIDAR / LADAR has become widespread in recent years, and uses pulse lasers to make time of flight measurements in order to build up a digital model of a scene.
  Interventional Cardiac Magnetic Resonance Imaging
  Dr S Roujol, Dr K Pusparajah
Applications accepted all year round

Funding Type

PhD Type

Research Project. Cardiac catheterisation is a common procedure in patients with congenital heart disease (CHD).
  Development of Novel Functional Intermediate Layers for Power Electronics Integration - Ref: CL2UF2018
  Prof C Liu
Application Deadline: 3 May 2020

Funding Type

PhD Type

Power electronics are widely used in electric and hybrid vehicles (EHV), aerospace crafts, renewable power components and traction control systems.
  EPSRC Centre for Doctoral Training in Engineered Tissues for Discovery, Industry and Medicine (LifETIME)

Funding Type

PhD Type

The CDT will train the next generation of leaders in developing in vitro tissues, sensing and diagnostics to develop humanised in vitro systems to drive better drug screening.
  Open hardware and software for modular, automated microscopy
  Dr R Bowman
Applications accepted all year round

Funding Type

PhD Type

The University of Bath is inviting applications for the following PhD project supervised by Dr Richard Bowman https://researchportal.bath.ac.uk/en/persons/richard-bowman/ in the Department of Physics.
  EPSRC Centre for Doctoral Training in Engineered Tissues for Discovery, Industry and Medicine (LifETIME)

Funding Type

PhD Type

The CDT will train the next generation of leaders in developing in vitro tissues, sensing and diagnostics to develop humanised in vitro systems to drive better drug screening.
  Computational Light Microscopy
  Dr T Vettenburg
Applications accepted all year round

Funding Type

PhD Type

A PhD studentship is available at the Computational Microscopy Lab of the University of Dundee. The student will develop a novel light microscopy technique to image biological samples in 3D.
  New metasurfaces for acoustic control - meta-atoms as passive resonant elements to yield highly directional radiation or detection of sound
  Prof A P Hibbins, Prof J R Sambles
Application Deadline: 30 April 2020

Funding Type

PhD Type

Joint supervisors. Prof Alastair P Hibbins, Prof J Roy Sambles. External partner. Dr Ben Hodder (QinetiQ). ***. The ability to emit or receive sound with directional dependence is of great relevance to acoustic imaging and navigation applications.
  Next generation metasurfaces: tensorial surfaces for novel antenna functionality: Tensorial Impedance Surfaces for Antennas
  Prof A P Hibbins, Dr S Horsley, Prof J R Sambles
Application Deadline: 30 April 2020

Funding Type

PhD Type

The studentship is part of the UK’s Centre of Doctoral Training in Metamaterials (XM2) based in the Departments of Physics and Engineering on the Streatham Campus in Exeter.
  PhD Engineering - In-orbit fabrication of large space structures using novel manufacturing technologies
  Prof C McInnes
Application Deadline: 7 May 2020

Funding Type

PhD Type

The James Watt School of Engineering at the University of Glasgow is seeking a highly motivated graduate to undertake a 3.5-year PhD project entitled.
  PhD in Engineering: Germanium-Tin Single Photon Detectors for LIDAR and Quantum Key Distribution
  Dr R Millar, Dr V P Georgiev
Application Deadline: 15 May 2020

Funding Type

PhD Type

Project overview. In this fully funded project (3.5 years) you will develop next-generation single photon avalanche diodes (SPAD) detectors for autonomous vehicle LIDAR and Quantum Key distribution applications.
  EPSRC Centre for Doctoral Training in Engineered Tissues for Discovery, Industry and Medicine (LifETIME)

Funding Type

PhD Type

The CDT will train the next generation of leaders in developing in vitro tissues, sensing and diagnostics to develop humanised in vitro systems to drive better drug screening.
  Next generation additive manufacturing using laser diode arrays
  Dr K Groom, Dr K Mumtaz
Applications accepted all year round

Funding Type

PhD Type

A funded PhD Studentship (UK/EU only) is available for research into next-generation additive manufacturing processes based on a new method for selective laser melting.
  Theory and Methodology for Nuclear Spins Diffusing in Porous Media
  Dr G Pileio
Application Deadline: 31 August 2020

Funding Type

PhD Type

Supervisor. Giuseppe Pileio. Co-supervisor Marcel Utz. Project description.
  Engineering material properties by ultrafast laser writing for photonics and information technology
  Research Group: Fibre & Systems Group
  Prof P Kazansky
Application Deadline: 31 August 2020

Funding Type

PhD Type

Supervisor. Professor Peter Kazansky. Project description. High-power ultrafast lasers enable the new technique of direct optical writing for patterning waveguides, micro- and nano-structures in three dimensions, to provide entirely new functionalities in optoelectronics.
  Printed optics by ultrafast laser nanostructuring of transparent materials
  Research Group: Fibre & Systems Group
  Prof P Kazansky
Application Deadline: 31 August 2020

Funding Type

PhD Type

Supervisor. Professor Peter Kazansky. Project description. High-power ultrafast lasers enable the new technique of direct optical writing for patterning waveguides, micro- and nano-structures in three dimensions, to provide entirely new functionalities in optoelectronics.
  Integrating photonic circuits with silicon electronics for low power computing
  Dr M Strain, Prof M Dawson
Application Deadline: 15 May 2020

Funding Type

PhD Type

This fully funded project will develop nano-assembly techniques for the integration of photonic systems directly onto silicon electronic chips.
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