Difference between revisions of "X-ray Worldwide facilities"

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*SATURN, Sandia National Laboratory, 8MA
 
*SATURN, Sandia National Laboratory, 8MA
 
*ANGARA-5-1 (Russia) [http://www.triniti.ru/Triniti_eng/Base1.html] 4 MA, 100 ns
 
*ANGARA-5-1 (Russia) [http://www.triniti.ru/Triniti_eng/Base1.html] 4 MA, 100 ns
*Imperial College, London, MAGPIE, 1.4 MA, 240 ns  
+
*Imperial College, London, MAGPIE, 1.4 MA, 240 ns [http://dorland.pp.ph.ic.ac.uk/magpie/index.html]
 
*Imperial College, London, GEPOPU, 180 kA, 120 ns
 
*Imperial College, London, GEPOPU, 180 kA, 120 ns
 
*Cornell University, COBRA,1 MA, 95-180 ns
 
*Cornell University, COBRA,1 MA, 95-180 ns

Revision as of 00:21, 20 February 2013

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Fact: As of 2012 Fusion shot simulations at 60 to 70 million amperes are showing a 100 to 1000 fold return on input energy


Worldwide Installations able to produce ICF

  • National_Ignition_Facility at the Lawrence Livermore National Laboratory [1]
  • Laser_Megajoule in Bordeaux, France [2]


Z-Pinch/X-Pinch Installations

  • Z machine, Sandia National Laboratories [3]
    • 1996 Z machine: 18 MA 100ns
    • 2006 ZR (Refurbished): 27MA 95ns
    • planned ZN (Z Neutron): 20 and 30 MJ per short
    • planned Z-IFE (Z-inertial fusion energy): 70MA 1 petawatt
  • SATURN, Sandia National Laboratory, 8MA
  • ANGARA-5-1 (Russia) [4] 4 MA, 100 ns
  • Imperial College, London, MAGPIE, 1.4 MA, 240 ns [5]
  • Imperial College, London, GEPOPU, 180 kA, 120 ns
  • Cornell University, COBRA,1 MA, 95-180 ns
  • Cornell University, XP Pulser, 450 kA, 50 ns
  • Xi'an, China, QiangGuang-1, 1 MA, 50 ns
  • Beijing, China, PPG-1, 400 kA, 100 ns
  • CIAE, China, Light II-A, 200 kA


Compact X-Pinch Devices

  • University of California, Compact X-Pinch X-rau source, 80 kA, 40 ns
  • Beijing, China, Table Top, 100 kA, 60 ns, 2m x 1.1m x 1.2m
  • Institute High Current Electronics, Russia, Compact Pulse Generator, 300 kA, 200 ns, 70 kg
  • France, PIAF, 250 kA, 180 ns
  • France, Table-top X-pinch, 40 kA, 30ns