CERN Accelerating science

CERN Document Server 2,037 registres trobats  1 - 10següentfinal  anar al registre: La cerca s'ha fet en 0.38 segons. 
1.
Modeling TeV Class Plasma Afterburners / Huang Cheng Kun ; Barnes, Christopher ; Clayton, Chris ; Decker, Franz Josef ; Deng, Suzhi ; Hogan, Mark ; Iverson, Richard ; Johnson, Devon K ; Joshi, Chandrashekhar ; Katsouleas, Thomas C et al.
Plasma wakefield acceleration can sustain acceleration gradients three orders of magnitude larger than conventional RF accelerator. In the recent E164X experiment, substantial energy gain of about 3Gev has been observed. [...]
2005 External link: Published version from JACoW
In : 21st IEEE Particle Accelerator Conference, Knoxville, TN, USA, 16 - 20 May 2005, pp.2666
2.
Modeling Self-Ionized Plasma Wakefield Acceleration for Afterburner Parameters Using QuickPIC / Zhou, Miaomiao ; Clayton, Chris ; Decker, Franz Josef ; Decyk, Viktor K ; Deng, Suzhi ; Huang Cheng Kun ; Iverson, Richard ; Johnson, Devon K ; Joshi, Chandrashekhar ; Katsouleas, Thomas C et al.
A plasma wakefield accelerator (PWFA) has been proposed as a way to double the energy of a future linear collider. This afterburner concept will require meter long uniform plasmas. [...]
2005 External link: Published version from JACoW
In : 21st IEEE Particle Accelerator Conference, Knoxville, TN, USA, 16 - 20 May 2005, pp.2905
3.
Field Ionization of Neutral Lithium Vapor using a 28.5 GeV Electron Beam / O'Connell, C ; Barnes, Christopher ; Clayton, Chris ; Decker, Franz Josef ; Deng, Suzhi ; Hogan, Mark ; Huang Cheng Kun ; Iverson, Richard ; Johnson, Devon K ; Joshi, Chandrashekhar et al.
The E164/E164X plasma wakefield experiment studies beam-plasma interactions at the Stanford Linear Acceleration Center (SLAC). Due to SLAC recent ability to variably compress bunches longitudinally from 650 microns down to 20 microns, the incoming beam is sufficiently dense to field ionize the neutral Lithium vapor. [...]
2005 External link: Published version from JACoW
In : 21st IEEE Particle Accelerator Conference, Knoxville, TN, USA, 16 - 20 May 2005, pp.1904
4.
Modeling Self-Ionized Plasma Wakefield Acceleration for Afterburner Parameters Using QuickPIC / Zhou, M ; Clayton, C E ; Decker, Franz Josef ; Decyk, V K ; Deng, S ; Huang, C ; Iverson, R ; Johnson, D K ; Joshi, C ; Katsouleas, Thomas C et al.
SLAC-PUB-11651.
- 2006. - 3 p.
Fulltext from SLAC
5.
Parametric exploration of intense positron beam-plasma interactions / Blue, B E ; Clayton, C E ; Decker, Franz Josef ; Hogan, M J ; Huang, C ; Iverson, R H ; Joshi, C ; Katsouleas, T C ; Marsh, K A ; Mori, W B et al.
SLAC-REPRINT-2003-081.- Stanford, CA : SLAC, 2003 - Published in : Laser Part. Beams: 21 (2003) , pp. 497-504
6.
Improvements for the Third Generation Plasma Wakefield Experiment E-164 at SLAC / Oz, Erdem ; Deng, Suzhi ; Katsouleas, Thomas C ; Muggli, Patric ; Barnes, Christopher ; Decker, Franz Josef ; Hogan, Mark ; Iverson, Richard ; Krejcik, Patrick ; Siemann, Robert et al.
SLAC-PUB-10721.- 2003 - 3 p. External link: Published version from JACoW
In : 20th IEEE Particle Accelerator Conference, Portland, OR, USA, 12 - 16 May 2003, pp.1530
7.
Plasma Dark Current in Self-ionized Plasma Wake Field Accelerators (PWFA) / Oz, Erdem ; Barnes, Christopher ; Clayton, Chris ; Decker, Franz Josef ; Deng, Suzhi ; Hogan, Mark ; Huang Cheng Kun ; Iverson, Richard ; Johnson, Devon K ; Joshi, Chandrashekhar et al.
Particle trapping is investigated with experiment, theory and simulations for conditions relevant to beam driven Plasma Wake Field Accelerators. Such trapping produces plasma dark current when the wakefield aplitude is above a threshold values and may place a limit on the maximum acceleration gradient in a PWFA. [...]
2005 External link: Published version from JACoW
In : 21st IEEE Particle Accelerator Conference, Knoxville, TN, USA, 16 - 20 May 2005, pp.3444
8.
Review of Beam-Driven Plasma Wakefield Experiments at SLAC / Hogan, Mark ; Barnes, Christopher ; Clayton, Chris ; Decker, Franz Josef ; Deng, Suzhi ; Emma, Paul ; Huang Cheng Kun ; Iverson, Richard ; Johnson, Devon K ; Joshi, Chandrashekhar et al.
In the plasma wakefield accelerator, a short relativistic-electron bunch drives a large amplitude plasma wave or wake. In experiment E-164X, we use the 28.5 GeV, ultra-short (?80 femtosecond), high peak-current (?30 kiloamperes) bunch now available at the Stanford Linear Accelerator Center Final Focus Test Beam facility. [...]
2005
In : 21st IEEE Particle Accelerator Conference, Knoxville, TN, USA, 16 - 20 May 2005, pp.e-proc. TOPA002
9.
Energy Measurement in a Plasma Wakefield Accelerator / Ischebeck, Rasmus ; Berry, Melissa ; Blumenfeld, Ian ; Decker, FranzJosef ; Hogan, Mark J ; Iverson, Richard H ; Kirby, Neil ; Siemann, Robert H ; Walz, Dieter ; Clayton, Christopher E et al.
PAC07-FRPMS067; SLAC-PUB-12605.- Stanford, CA : SLAC, 2007 - 3 p. External link: Fulltext from SLAC
In : 22nd Particle Accelerator Conference, Albuquerque, NM, USA, 25 - 29 Jun 2007, pp.4168-4176
10.
Observation of Spontaneous Emitted X-ray Betatron Radiation in Beam-Plasma Interactions / Joshi, C ; Blue, B E ; Clayton, C E ; Dodd, E S ; Huang, C K ; Marsh, K A ; Mori, W B ; Wang, S ; Assmann, R W ; Decker, Franz Josef et al.
Geneva : CERN, 2001 Access to fulltext document: PDF;
In : 19th IEEE Particle Accelerator Conference, Chicago, IL, USA, 18 - 22 Jun 2001, pp.e-proc. 3999

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