CERN Accelerating science

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1.
Simulations of Electron Effects in Superconducting Cavities with the VORPAL Code / Nieter, Chet (Tech-X, Boulder, Colorado) ; Cary, John R (Tech-X, Boulder, Colorado) ; Messmer, Peter (Tech-X, Boulder, Colorado) ; Smithe, David (Tech-X, Boulder, Colorado) ; Stoltz, Peter (Tech-X, Boulder, Colorado) ; Werner, Gregory (CIPS, Boulder, Colorado)
2006 - 3 p. External link: Published version from JACoW
In : 10th European Particle Accelerator Conference, Edinburgh, UK, 26 - 30 Jun 2006, pp.2269
2.
VORPAL as a Tool for Three-Dimensional Simulations of Multipacting in Superconducting RF Cavities / Nieter, Chet ; Stoltz, Peter ; Werner, Gregory ; Cary, John R
2005 - 3 p. External link: Published version from JACoW
In : 21st IEEE Particle Accelerator Conference, Knoxville, TN, USA, 16 - 20 May 2005, pp.4332
3.
Simulations Using the VORPAL Code of Electron Impact Ionization Effects in Waveguide Breakdown Processes / Stoltz, Peter ; Messmer, Peter ; Nieter, Chet ; Cary, John R
2005 - 3 p. External link: Published version from JACoW
In : 21st IEEE Particle Accelerator Conference, Knoxville, TN, USA, 16 - 20 May 2005, pp.2298
4.
Optical Injection into Laser Wake Field Accelerators / Cary, John R ; Bruhwiler, David L ; Esarey, Eric ; Geddes, Cameron G R ; Giacone, Rodolfo ; Leemans, Wim ; Nieter, Chet
The accelerating gradient of laser-generated wake fields in plasmas can be orders of magnitude greater than the gradients obtainable in traditional, rf structures. One of the hurdles to overcome on the road to practical utilization of said plasma wake fields for production of high energy particles is the creation of quality beams having significant charge, low emittance, and narrow energy spread. [...]
2005
In : 21st IEEE Particle Accelerator Conference, Knoxville, TN, USA, 16 - 20 May 2005, pp.e-proc. TOPA003
5.
Mono Energetic Beams from Laser Plasma Interactions / Geddes, Cameron G ; Cary, John R ; Esarey, Eric ; Leemans, Wim ; Nieter, Chet ; Schröder, Carl B ; Toth, Csaba ; Van Tilborg, Jeroen
A laser driven wakefield accelerator has been tuned to produce high energy electron bunches with low emittance and energy spread by extending the interaction length using a plasma channel. Wakefield accelerators support gradients thousands of times those achievable in RF accelerators, but short acceleration distance, limited by diffraction, has resulted in low energy beams with 100% electron energy spread. [...]
2005 External link: Published version from JACoW
In : 21st IEEE Particle Accelerator Conference, Knoxville, TN, USA, 16 - 20 May 2005, pp.69

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6 Nieter, C
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