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Optical Physics (laser plasma) PhD Projects, Programs & Scholarships

We have 5 Optical Physics (laser plasma) PhD Projects, Programs & Scholarships

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  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).
  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.
  Probing metamaterials dynamics by high repetition rate attosecond pulse from multi-colour synthesised strong laser field.
  Dr A Zair
Applications accepted all year round

Funding Type

PhD Type

Attosecond pulses production and characterisation were a tremendous breakthrough is ultra-fast science that enabled the observation in real time of electronic motion in molecular system in gas phase.
  Laser induced breakdown spectroscopy for subsea applications
  Dr T Thevar, Dr K Nakkeeran
Applications accepted all year round

Funding Type

PhD Type

Laser Induced Breakdown Spectroscopy (LIBS) is a widely used technique to obtain the elemental constituents of a sample. The process uses a short pulse of focused laser light to evaporate a minute volume of a target substance by highly localized heating to temperatures greater than 5000 K.
  Toward a new generation of high-power THz radiation sources
  Dr M Hasan, Prof Y-C Huang
Application Deadline: 31 December 2019

Funding Type

PhD Type

Despite the great development of electromagnetic radiation sources in the 20th century; sources in the THz band, creating the “THz gap” in the electromagnetic spectrum.
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