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Optical Physics (power) PhD Projects, Programs & Scholarships

We have 27 Optical Physics (power) PhD Projects, Programs & Scholarships

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  Investigation of techniques for nonlinear frequency conversion of high power fibre lasers to the visible wavelength band
  Research Group: Fibre & Systems Group
  Prof A Clarkson
Application Deadline: 30 September 2019

Funding Type

PhD Type

Optoelectronics Research Centre. Supervisor. Prof. Andy Clarkson. Co-supervisor. Dr Peter Shardlow.
  High-Power Laser Delivery in Hollow Core Fibres
  Research Group: Fibre & Systems Group
  Prof D Richardson
Application Deadline: 31 August 2019

Funding Type

PhD Type

Supervisor. Professor David Richardson FRS, FREng. Co-supervisors. Dr Hans Christian Mulvad and Dr Lin Xu. Project Description. This project will seek to demonstrate new record power levels for laser power delivery using hollow core fibres (HCFs).
  Development of power-scalable and wavelength-flexible fibre lasers in the two-micron wavelength band to serve the needs of emerging applications in medicine and materials processing
  Research Group: Fibre & Systems Group
  Prof A Clarkson
Application Deadline: 30 September 2019

Funding Type

PhD Type

Supervisor. Prof. Andy Clarkson. Co-supervisor. Dr Peter Shardlow. Optoelectronics Research Centre. Two-micron fibre laser technology has the potential to yield a wealth of new applications in areas such as industrial laser processing, medicine, defence and optical communications.
  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.
  Theoretical and numerical studies of relativistic laser-plasma interaction and applications
  Prof Z Sheng
Applications accepted all year round

Funding Type

PhD Type

You might be a potential candidate if you are interested in using high performance computing to discover novel physics or solve key problems in high intensity laser-matter interactions and their applications, particularly in advanced particle accelerators and radiation sources (from THz to X-rays).
  Doctor of Engineering (EngD) Short pulse lasers for machining composite materials (Luxinar)
  Prof D Reid, Prof D Esser
Applications accepted all year round

Funding Type

PhD Type

Project not available to non UK/EU applicants. The EngD is an alternative to a traditional PhD aimed at students wanting a career in industry.
  Next Generation Silicon Photonic Devices for Low Power and High Data Rate Applications
  Dr D Thomson, Dr A Shakoor
Application Deadline: 31 August 2019

Funding Type

PhD Type

We are seeking a PhD student to join silicon photonics group at the University of Southampton which is Pioneer in the field. The group consists of around 50 researchers and postgraduate students and has a reputation of being world leader in the field of silicon photonics.
  Coherent and incoherent attosecond x-ray sources based on laser-plasma interactions
  Prof D Jaroszynski
Applications accepted all year round

Funding Type

PhD Type

PhDs are offered in an exciting and challenging research area, with a vibrant group of experimentalists and theoreticians developing and applying ultra-compact accelerators and x-ray sources based on laser-plasma interactions.
  Doctor of Engineering (EngD): Optical Fibre Sensing for Offshore Renewable Energy (Fraunhofer)
  Dr W N MacPherson, Dr Brian Sellar
Application Deadline: 30 December 2019

Funding Type

PhD Type

Project not available to non UK/EU applicants. Project Description. Distributed optical fibre sensing is a topic of great industrial relevance.
  Fibre laser based mid infrared source development
  Research Group: Fibre & Systems Group
  Prof D Richardson
Application Deadline: 31 August 2019

Funding Type

PhD Type

Supervisor. Professor David Richardson FRS, FREng. Co-supervisor. Dr Lin Xu. Project Description. This projects aims to develop a ground-breaking new technology platform for the mid-infrared (mid-IR) and demonstrate the enabling capabilities it provides in several important application areas, with a lice sciences focus.
  Doctor or Engineering (EngD): Electro-optic devices for extreme LIDAR in highly dynamic environments
  Prof D Reid
Application Deadline: 30 January 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.
  Up-conversion detectors based on PPLN waveguides (Miniaturising components for imaging in low light)
  Prof P Smith
Application Deadline: 31 August 2019

Funding Type

PhD Type

Co-supervisors. Dr Corin Gawith and Dr Sam Berry. Our friendly team of 20 researchers specialises in the development and manufacture of novel optoelectronic components for applications in quantum technology, integrated optical sensors, and laser optics.
  Fast, reliable and secure wireless IoT chaos-based communication
  Dr M S Baptista
Applications accepted all year round

Funding Type

PhD Type

This PhD project tackles scientific issues aimed at creating and laying the mathematical foundations of an innovative Wireless IoT Communication System…
  Anti-reflecting and Anti-soiling coatings for solar panel cover glass
  Prof M Walls, Dr P Isherwood
Applications accepted all year round

Funding Type

PhD Type

The provision of clean, sustainable energy is one of the greatest challenges facing modern society and solar photovoltaics (PV) provide the best opportunity for rapidly expanding renewable energy.
  Development of cutting-edge solid-state THz lasers
  Dr A Lee, Dr H Pask
Applications accepted all year round

Funding Type

PhD Type

Terahertz (THz) radiation has the potential to revolutionise the fields of security, medicine and numerous industries, through its application in imaging and spectroscopy.
  PhD on nonlinear optics and laser physics in passive resonators
  Dr M Erkintalo, Assoc Prof S. G. Murdoch
Application Deadline: 28 November 2019

Funding Type

PhD Type

A fully funded PhD studentship is available starting as soon as possible to work on nonlinear optics in passive resonators. The resonant enhancement of laser light launched into an optical cavity can be leveraged to increase the strength of nonlinear light-matter interactions.
  School of Engineering - Chip Scale Optical Frequency Combs
  Prof M Sorel, Prof D Paul
Application Deadline: 31 August 2019

Funding Type

PhD Type

The School of Engineering of the University of Glasgow is seeking a highly motivated graduate to undertake an exciting 4-year PhD project entitled ‘ Chip Scale Optical Frequency Combs ’ within the Electronics and Nanoscale Engineering Division.
  Next generation additive manufacturing using laser diode arrays
  Dr K Groom
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.
  PhD position in the field of topological polaritonics - investigating the polaritons in lattices of coupled zero-dimensional microresonators
  Research Group: Inorganic Semiconductors
  Dr D Krizhanovskii
Applications accepted all year round

Funding Type

PhD Type

Recent advances in semiconductor nano-technology have led to a new generation of robust controllable structures where manipulation of coupling between light and matter can be performed on a sub-micrometer scale.
  Advance laser cutting system for electrical steel sheets
  Dr J Huang
Application Deadline: 28 August 2019

Funding Type

PhD Type

*This is a KESS 2 East scholarship opportunity. Please note the eligibility information in the advert text or contact the team for further information.*.
  PhD Studentship – Synthesis of new Chromophors to use in Optoelectronic applications
  Dr R Rios Torres
Application Deadline: 31 August 2019

Funding Type

PhD Type

Gas sensing plays a key role in enabling many different technologies used to monitor the emissions from different sources. Photonic gas sensors exhibit unique advantages of building a CMOS-compatible, cost-effective, and portable sensing system fully integrated on a single chip.
  Advanced ultra-short pulse two-micron fibre lasers
  Prof D Richardson
Application Deadline: 31 August 2019

Funding Type

PhD Type

Supervisor. Professor David Richardson FRS. Co-supervisor. Dr Jonathan Price. This PhD project will focus on the latest fiber lasers operating in the two-micron wavelength region which have the potential to open-up a wealth of new applications in medical imaging, industrial processing and optical communications.
  Development of novel fibre laser sources based on multicore fibre technology
  Research Group: Fibre & Systems Group
  Prof D Richardson
Application Deadline: 31 August 2019

Funding Type

PhD Type

Supervisor. Professor David Richardson FRS, FREng. Co-supervisor. Dr Di Lin. Project Description. Fibre lasers have emerged as the technology of choice for a wide range of industrial, medical and fundamental science applications.
  Hollow Core Fibres in emerging applications
  Dr R Slavik, Prof D Richardson
Applications accepted all year round

Funding Type

PhD Type

We are looking for candidates with an interest in fibre opitcs and a degree or masters’ degree in physics or electronics to join us in researching novel optical fibres (hollow core fibres) manufactured in our Cleanroom complex for use in emerging applications (such as 5G networks, latency-sensitive communications, etc.) in collaboration with our recently-formed spin-off company, Lumenisity.
  Ultra-stable fibre optics using new-generation optical fibres
  Dr R Slavik, Dr F Poletti, Dr E Numkam Fokoua, Prof D Richardson
Applications accepted all year round

Funding Type

PhD Type

We are looking for a candidate with an interest in fibre optics and a degree or masters’ degree in physics or electronics to join us in researching the applications of brand new hollow core optical fibres developed at the University of Southampton (see ‘Further information’ below).
  Deep ultraviolet LED devices for few-photon optical communications and imaging
  Prof M Dawson, Dr J Herrnsdorf
Application Deadline: 31 August 2019

Funding Type

PhD Type

Start date. October 2019. Duration. 3.5 yrs. Background. Conventional optical communications is based on fibre-optic networks operating in the near-infrared.
  Integrated Ultrafast Photonics within the Engineering and Physical Sciences Research Council (EPSRC) project Industrial Pathway to Micro-Lasers
  Dr A Pasquazi
Application Deadline: 1 September 2019

Funding Type

PhD Type

The Emergent Photonics Lab http://www.sussex.ac.uk/physics/epic/ of the School of Mathematical and Physical Science (MPS) is pleased to offer a funded PhD position in the field of Ultrafast Photonics.
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