dc.creatorMurillo Acevedo, M T
dc.creatorDugar-Zhabon, V D
dc.date.accessioned2019-12-17T15:11:02Z
dc.date.accessioned2022-09-28T13:44:55Z
dc.date.available2019-12-17T15:11:02Z
dc.date.available2022-09-28T13:44:55Z
dc.date.created2019-12-17T15:11:02Z
dc.date.issued2016-02-12
dc.identifierhttp://hdl.handle.net/11634/20366
dc.identifierhttps://doi.org/10.1088/1742-6596/687/1/012059
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/3645392
dc.description.abstractThis work analyzes through computational methods the phenomenon of con nement and heating of plasmas, in open magnetic traps, Minimum-B, and zero-B under conditions of resonance electron cyclotron (ECR). This simulation is made using electrostatic particle in cell method. First, it simulates the minimum-B trap, which has been studied both numerically and experimentally, by which is accomplished the confrontation of 6 different types of results that help us to validate our code. In the same way the zero-B trap is analysed. Proposed by Dr. Dugar-Zhabon, the main characteristic of the trap is the nullity of the magnetic eld in the centre of the trap. The results show the detailed behaviour of the electronic component in the initial stage of the formation of plasma. Given the computational cost of the used model that allowed us to simulates ne details of the dynamics of plasma. Results were only reached in the time of half-life of the electrons. During this period the minimum-B trap proved to be better for the production of ions than the zero-B trap. Due to the huge amount of equations needed to solve the motion equations and the charge density, they are calculated in a Parallel way by GPU clustering.
dc.relationR Geller 1996 Electron cyclotron resonance ion sources and ECR plasmas (Bristol: Institute of Physics)
dc.relationYoshinobu Kawai, Hideo Ikegami, Noriyoshi Sato, Akihisa Matsuda, Kiichiro Uchino, Masayuki Kuzuya and Akira Mizuno 2010 Industrial plasma technology applications from environmental to energy technologies (Germany: WILEY-VCH)
dc.relationV D Dougar-Jabon, F A Vivas Mejia and A M Umnov 2000 Physica Scripta 62 183
dc.relationV D Dugar-Zhabon and M T Murillo Acevedo 2009 IEEE Transaction on Plasma Science 38 3449
dc.relationS Biri, A Derzsi, Fekete, I Ivn 2007 High Energy Physics and Nuclear Physics 31 165
dc.relationR Rcz, S Biri and J Plinks 2011 Plasma Sources Sci Technol 2 025002
dc.relationZ Q Xie 1998 Review of Scienti c Instruments 69-2 625
dc.relationS Biri, A Valek and T Suta, E Takcs, Cs Szab and L T Hudson 2004 Review of Scienti c Instruments 75-5 1420
dc.relationSndor Biri, Endre Takcs, Richrd Rcz, Larry T Hudson and Jzsef Plinks 2011 IEEE Transactions on Plasma Science 39-11 2494
dc.relationE Takcs, B Radics, C I Szab, S Biri, L T Hudson, J Imrek, B Juhsz, T Suta, A Valek, J Plinks 2005 Nuclear Instruments and Methods in Physics Research B 235 120
dc.relationP Grbling, J Hollandt and G Ulm 2002 Review of Scienti c Instruments 73-2 614
dc.relationU Lehnert and G Zschornack 1996 Review of Scienti c Instruments 67-3 1264
dc.relationZ Q Xie, C M Lyneis 1995 Rev Sci Instrum 66 4218
dc.rightshttp://creativecommons.org/licenses/by-nc-sa/2.5/co/
dc.rightsAtribución-NoComercial-CompartirIgual 2.5 Colombia
dc.titlePIC numerical study of ECR plasmas confinement in a minimum-B and zero-B magnetic traps with GPU
dc.typeGeneración de Nuevo Conocimiento: Artículos publicados en revistas especializadas - Electrónicos


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