Time-Resolved Photoelectron Spectroscopy using Hollow-Core Photonic Crystal Fibres

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Title
Time-Resolved Photoelectron Spectroscopy using Hollow-Core Photonic Crystal Fibres

CoPED ID
e6d1eafd-05e0-49da-a2cc-51e638e7a2fe

Status
Active


Value
No funds listed.

Start Date
Sept. 30, 2020

End Date
March 31, 2024

Description

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This is a PhD research project in experimental Physics. It will employ ultrafast femtosecond lasers in conjunction with novel hollow-core photonic crystal fibre sources to undertake state-of-the art time-resolved photoelectron imaging measurements investigating non-radiative energy redistribution in UV excited molecules. The systems chosen will provide analogues of the chromophores (i.e. the light absorbing centres) found in larger molecules of biological significance. A key focus will be on the interplay between molecular structure, dynamical timescales and photochemical function. The project will develop advanced skills in non-linear optics, lasers, molecular spectroscopy and ultrahigh vacuum techniques. Some software development for data acquisition/analysis will be required and there will also be opportunities to gain proficiency with commercial quantum chemistry computational platforms such as Gaussian.

John Travers SUPER_PER
Dave Townsend SUPER_PER

Subjects by relevance
  1. Spectroscopy
  2. Molecular dynamics
  3. Lasers
  4. Quantum chemistry
  5. Optics

Extracted key phrases
  1. Core Photonic Crystal Fibres
  2. Art time
  3. Resolved Photoelectron Spectroscopy
  4. Core photonic crystal fibre source
  5. Phd research project
  6. Photoelectron imaging measurement
  7. Ultrafast femtosecond laser
  8. Uv excited molecule
  9. Radiative energy redistribution
  10. Hollow
  11. Commercial quantum chemistry computational platform
  12. Large molecule
  13. Experimental Physics
  14. Light absorbing centre
  15. Non

Related Pages

UKRI project entry

UK Project Locations