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首页> 外文期刊>International Journal of Physical Sciences >An electrostatic lens system for the deceleration of high intensity heavy ion beams
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An electrostatic lens system for the deceleration of high intensity heavy ion beams

机译:用于减速高强度重离子束的静电透镜系统

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This work focuses on the design and implementation of an electrostatic lens system to produce high-intensity, low-energy ion beams, by means of numerical simulation of the beam trajectories (SIMION 7). The lens design was optimized using the simulation data obtained with a performance characteristics of the electrostatic lens system. This lens system maintains good beam focal quality for the deceleration of heavy ion beams of argon ions of with space charge of 10 mA. The beam emittance and beam diameter as a function of the gap width for a decel voltage of 45 kv of a deceleration lens system for a singly charged argon ion trajectories were investigated. A gap width of 5 mm and a tube diameter of 26 mm were found to be the minimum values. Also, a minimum of 24 mm of inner tube diameter was obtained for the relation between the inner tube diameter and the beam diameter. Beam emittance and beam diameter as a function of the focusing points for a decel voltage of 45 kv of a deceleration lens system for a singly charged argon ion trajectories was studied. A minimum of 455 mm was obtained at the outer exit of the deceleration lens system. While for the beam diameter, a minimum of 460 mm was deduced. It was found also that, a minimum of Vdecel = 43 kV, deceleration voltage was obtained for the relation between the deceleration voltage and beam emittance. Also, a minimum of Vdecel = 49 kV was found for the relation between the decelration voltage and beam diameter.
机译:这项工作着重于静电透镜系统的设计和实现,以通过束轨迹的数值模拟来产生高强度,低能量的离子束(SIMION 7)。使用获得的具有静电透镜系统性能特征的仿真数据优化了透镜设计。该透镜系统在减速10 mA空间电荷的氩离子重离子束时保持良好的束聚焦质量。研究了单电荷氩离子轨迹的减速透镜系统在45 kv减速电压下的束发射率和束直径与间隙宽度的关系。发现5mm的间隙宽度和26mm的管直径是最小值。另外,对于内管直径和光束直径之间的关系,获得了最小24mm的内管直径。对于单电荷氩离子轨迹的减速透镜系统,当减速电压为45 kv时,光束发射率和光束直径随焦点变化而变化。在减速透镜系统的外部出口处获得的最小距离为455 mm。对于光束直径,推算出最小为460 mm。还发现,最小Vdecel = 43kV,对于减速电压与束发射率之间的关系获得了减速电压。另外,对于减速电压和光束直径之间的关系,发现最小Vdecel = 49 kV。

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