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The effect of grid transparency and finite collector size on determining ion temperature and density by the retarding potential analyzer

机译:栅电透明性和有限集电极尺寸对延迟电势分析仪确定离子温度和密度的影响

摘要

The analysis of ion data from retarding potential analyzers (RPA's) is generally done under the planar approximation, which assumes that the grid transparency is constant with angle of incidence and that all ions reaching the plane of the collectors are collected. These approximations are not valid for situations in which the ion thermal velocity is comparable to the vehicle velocity, causing ions to enter the RPA with high average transverse velocity. To investigate these effects, the current-voltage curves for H+ at 4000 K were calculated, taking into account the finite collector size and the variation of grid transparency with angle. These curves are then analyzed under the planar approximation. The results show that only small errors in temperature and density are introduced for an RPA with typical dimensions; and that even when the density error is substantial for non-typical dimensions, the temperature error remains minimal.
机译:来自延迟电位分析仪(RPA)的离子数据分析通常是在平面近似下进行的,其中假定栅格透明度随入射角而恒定,并且收集了到达收集器平面的所有离子。对于离子热速度与车速相当的情况,这些近似值无效,从而导致离子以较高的平均横向速度进入RPA。为了研究这些影响,计算了H +在4000 K时的电流-电压曲线,其中考虑了有限的集电极尺寸以及栅格透明度随角度的变化。然后在平面近似下分析这些曲线。结果表明,对于具有典型尺寸的RPA,仅引入了很小的温度和密度误差。即使非典型尺寸的密度误差很大,温度误差也保持最小。

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  • 作者

    Maier E. J.; Troy B. E. Jr.;

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  • 年度 1973
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