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91探花
Atomic and Laser Physics
Credit: Jack Hobhouse

Prof Peter Norreys FInstP;

Professorial Research Fellow

Research theme

  • Accelerator physics
  • Lasers and high energy density science
  • Fundamental particles and interactions
  • Plasma physics

Sub department

  • Atomic and Laser Physics

Research groups

  • 91探花 Centre for High Energy Density Science (OxCHEDS)
peter.norreys@physics.ox.ac.uk
Telephone: 01865 (2)72220
Clarendon Laboratory, room 141.1
  • About
  • Research
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  • Publications

Research on compact, bright, coherent x-ray sources at RAL

P SOC PHOTO-OPT INS 2778 (1996) 1199-1200

Authors:

J Zhang, A Behjat, AE Dangor, C Danson, A Demir, L Dwivedi, EE Fill, M Holden, PB Holden, MH Key, CLS Lewis, YL Li, P Loukakos, AG MacPhee, S Moustaizis, D Neely, PA Norreys, GJ Pert, SA Ramsden, SJ Rose, D Schlogl, YF Shao, J Steingruber, GJ Tallents, O Thomas, F Walsh, JS Wark, YL You, M Zepf, P Zeitoun

Spatial and temporal coherence measurements of harmonics of a 1053 nm, 2.5 ps laser interacting with solid surfaces

X-RAY LASERS 1996 (1996) 452-454

Authors:

J Zhang, M Zepf, PA Norreys, AE Dangor, M Bakarezos, CN Danson, A Dyson, AP Fews, P Gibbon, P Lee, P Loukakos, MH Key, S Moustaizis, D Neely, FN Walsh, JS Wark

Pulse generation and shaping using the ultra-high-power laser system: VULCAN

Proceedings of SPIE - The International Society for Optical Engineering 2633 (1995) 316-323

Authors:

CN Danson, LJ Barzanti, CB Edwards, SA Edwards, CN Harrison, CJ Mistry, D Neely, PA Norreys, DA Pepler, DA Rodkiss, IN Ross, WT Toner, TB Winstone, FN Walsh, RW Wyatt

Abstract:

VULCAN is a multi-beam, multi-terawatt laser facility based on Nd:glass operating at 1053 nm. The system is highly versatile, supplying four experimental areas with laser radiation at a range of pulse durations from 700 fs to 20 ns, at fundamental frequency, frequency doubled, or, as a limited option, frequency tripled wavelengths. Beams are available in a number of geometries dictated by the university based programs, which at present include: cluster; line focus including x-ray laser oscillator/amplifier geometry; backlighting; probing; and chirped pulse amplification (CPA) configurations. The system has eight beams which can deliver synchronized long and short pulses including two beams which can deliver subpicosecond CPA pulses. The CPA capabilities on VULCAN are an integral part of the laser system, not only delivering sub-picosecond pulses, but allowing uncompressed pulses and multi-pulses to be delivered to the target areas synchronized with the nanosecond pulses. This paper describes the system configuration, details the means of pulse synchronization and presents some of the pulse manipulation techniques used on VULCAN to provide the laser requirements for the experimental program.

Improving the efficiency of x-ray lasers

Proceedings of SPIE--the International Society for Optical Engineering SPIE, the international society for optics and photonics 2520 (1995) 34-44

Authors:

Gregory J Tallents, Philippe Zeitoun, A Behjat, A Demir, M Holden, J Krishnan, Ciaran LS Lewis, Andrew G MacPhee, PJ Warwick, Marc Nantel, Gerard Jamelot, Bedrich Rus, Pierre Jaegle, Annie Klisnick, P Goedtkindt, Antoine Carillon, Ernst E Fill, Yuelin Li, Georg Pretzler, Dieter Schloegl, Juergen Steingruber, David Neely, Peter A Norreys, Michael H Key, Jie Zhang, Geoffrey J Pert, SB Healy, JA Plowes

Amplification of 26-fs, 2-TW pulses in Ti:sapphire

Proceedings of SPIE--the International Society for Optical Engineering SPIE, the international society for optics and photonics 2377 (1995) 323-329

Authors:

Chung-Po Huang, Jianping Zhou, Henry C Kapteyn, Margaret M Murnane

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