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受空间电荷效应影响的离子束流从等离子体边界的最佳引出的一阶理论
作者姓名:G.D.Alton  H.Bilheux
作者单位:Oak Ridge National Laboratory Oak Ridge,TN 37831-6372,USA,Oak Ridge National Laboratory,Oak Ridge,TN 37831-6372,USA
基金项目:Supported by the U.S.Department of Energy under contract DE-AC05-00OR22725 with UT-Battelle,LLC
摘    要:The problem of extracting space-charge-limited ion beams from spherical emission boundaries is analyzed for simple,two electrode,parallel-plate and spherical sector electrode systems by application of Langmuir-Blodgett theory with account taken for the divergent lens effect caused by the aperture in the extraction electrode.Results derived from simulation studies for the three electrode system,designed for use with the Oak Ridge National Laboratory ECR ion source,complement predictions made from elementary analytical theory with or without magnetic field in the extraction region of the source.Under minimum half- angular divergence(minimum emittance)conditions,the plasma emission boundary has an optimum curvature and the perveance,P,(i.e,current density,j and extraction gap,d),has an optimum value for a given charge- state.From these studies,we find that the optimum perveance for any electrode system can be determined from the Child-Langmuir relation for the parallel-plate electrode system multiplied by a factor,F with value 0.49≤F≤1.

收稿时间:2007-5-30
修稿时间:2007年4月20日

Elementary Theory for Optimum Extraction of Space-Charge-Dominated Ion Beams from Plasma Boundaries
G.D.Alton,H.Bilheux.Elementary Theory for Optimum Extraction of Space-Charge-Dominated Ion Beams from Plasma Boundaries[J].High Energy Physics and Nuclear Physics,2007,31(Z1):201-205.
Authors:GDAlton  HBilheux
Abstract:The problem of extracting space-charge-limited ion beams from spherical emission boundaries is analyzed for simple,two electrode,parallel-plate and spherical sector electrode systems by application of Langmuir.Blodgett theory with account taken for the divergent lens effect caused by the aperture in the extraction electrode.Results derived from simulation studies for the three electrode system,designed for use with the Oak Ridge National Laboratory ECR ion source,complement predictions made from elementary analytical theory with or without magnetic field in the extraction region of the source.Under minimum halfangular divergence (minimum emittance) conditions,the plasma emission boundary has an optimum curvature and the perveance,P,(i.e,current density,J and extraction gap,d),has an optimum value for a given chargestate.From these studies,we find that the optimum perveance for any electrode system can be determined from the Child-Langmuir relation for the parallel-plate electrode system multiplied by a factor,F with value 0.49≤F≤1.
Keywords:space-charge dominated beam extraction theory  ion beam extraction simulation  optimum perveance  optimum angular divergence
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