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Measurements of the parallel and perpendicular ion temperatures by means of an ion-sensitive segmented tunnel probe

机译:通过离子敏感分段式隧道探针测量平行和垂直离子温度

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Localised ion temperature measurements can only be performed with special electric probes where the electron component of the current is kept off from the collector. In a strong magnetic field the effect can be utilised that the electron gyro-radius is much smaller than that of the ions. This method was developed by Katsumata and Okazaki (Japan J. Appl. Phys. 6, 123 (1967)). We have used a so-called tunnel probe (which consists of a conductive tunnel, terminated by an isolated back plate) by adding a diaphragm in front. Thereby the tunnel is prevented from incident electrons at any potential of both electrodes. By sweeping the potential across the tunnel, the perpendicular ion temperature can be inferred. By segmenting the tunnel axially in two parts also the parallel ion temperature can be determined. When the electrodes are biased to ion saturation, the ratio between the ion currents, which reach the first and the second segment, respectively, is a measure for the parallel ion temperature. The dependence of the ratio of the currents has to be determined by a PIC simulation. (C) 2004 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:只能使用特殊的电探针执行局部离子温度测量,在电探针中,电流的电子成分与集电极保持隔离。在强磁场中,可以利用电子陀螺半径比离子小得多的效果。该方法由Katsumata和Okazaki(Japan J. Appl。Phys.6,123(1967))开发。我们在前面添加了一个膜片,从而使用了所谓的隧道探针(由导电隧道组成,由绝缘的背板端接)。因此,防止了隧道在两个电极的任何电势下入射电子。通过扫过隧道中的电势,可以推断出垂直离子温度。通过将隧道轴向分为两部分,还可确定平行离子温度。当电极偏置到离子饱和时,分别到达第一段和第二段的离子电流之间的比率是平行离子温度的量度。电流比的依赖性必须通过PIC仿真确定。 (C)2004 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim。

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