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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
  • Teaching
  • Publications

Supernova remnant simulation experiments on VULCAN

Proceedings of SPIE--the International Society for Optical Engineering SPIE, the international society for optics and photonics 4424 (2001) 484-491

Authors:

NC Woolsey, Y Abou Ali, R Evans, RAD Grundy, SJ Peschte, P Carolan, N Conway, RO Dendy, P Helander, KG McClements, JG Kirk, Peter A Norreys, MM Notley, SJ Rose

30aYP-12 超高強度レーザー生成高輝度放射線による核反応に関する研究I

(2001) 210

Authors:

反保 元伸, 児玉 了祐, 遠山 祐介, 大谷 史彦, 生田 祐介, 鈴木 健治, 澤井 清信, Tグループ, 北川 米喜, 田中 和夫, 宮永 憲明, 乗松 孝好, 三間 圀興, 山中 龍彦, 鶴田 隆夫, P Norreys, M Zepf, K Krushelnick, AE Dangor

30pYP-5 高速点火用新型ターゲットによる爆縮コア追加熱実験 : X線画像計測

(2001) 212

Authors:

正崎 敏哉, 児玉 了祐, 重森 啓介, 遠山 祐典, 大谷 史彦, P Norreys, R Evans, K Krushelnick, M Zepf, AE Dangor, MTグループ, GOグループ, Tグループ, 田中 和夫, 北川 米喜, 乗松 孝好, 藤田 尚徳, 三間 国興, 山中 龍彦

30pYP-6 高速点火核融合:日英国際共同実験

(2001) 212

Authors:

兒玉 了祐, 三間 圀興, 乗松 孝好, 遠山 祐典, 反保 元伸, 重森 啓介, 大谷 史彦, 正崎 敏哉, 藤田 尚徳, 北川 米善, 田中 和夫, 山中 龍彦, P Norreys, M Zepf, K Krushelnick, R Evans, AE Dangor

Production of radioactive nuclides by energetic protons generated from intense laser-plasma interactions

Applied Physics Letters 78:1 (2001) 19-21

Authors:

MIK Santala, M Zepf, FN Beg, EL Clark, AE Dangor, K Krushelnick, M Tatarakis, I Watts, KWD Ledingham, T McCanny, I Spencer, AC Machacek, R Allott, RJ Clarke, PA Norreys

Abstract:

Nuclear activation has been observed in materials exposed to the ablated plasma generated from high intensity laser-solid interactions (at focused intensities up to 2 × 1019 W/cm2) and is produced by protons having energies up to 30 MeV. The energy spectrum of the protons is determined from these activation measurements and is found to be consistent with other ion diagnostics. The possible development of this technique for "table-top" production of radionuclides for medical applications is also discussed.

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