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Theory of a Probe in a Strong Magnetic Field. AT(30-1)-1238-MATT 599

机译:强磁场中的探针理论。 AT(30-1)-1238-MATT 599

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摘要

A kinetic approach is used to develop a theory of electrostatic probes in a fully ionized plasma in the presence of a magnetic field. A consistent asymptotic expansion is obtained assuming that the electron Larmor radius is small compared to the radius of the probe. The order of magnitude of neglected terms is given. It is found that the electric potential within the tube of force defined by the cross section of the probe decays non-mono tonic ally from the probe; this bump disappears at a certain probe voltage and the theory is valid up to this voltage. The transition region, which extends beyond plasma potential, is not exponential. The possible saturation of the electron current is discussed. Restricted numerical results are given; they seem to be useful for weaker magnetic fields down to the zero-field limit. Extensionsudof the theory a r e considered.
机译:在存在磁场的情况下,使用动力学方法来发展在完全电离的等离子体中的静电探针理论。假设电子拉莫尔半径比探针的半径小,则可以获得一致的渐近扩展。给出了被忽略术语的数量级。已经发现,由探针的横截面限定的力管内的电势会从探针上衰减非单调。该凸起在一定的探针电压下消失,并且理论上对该电压有效。延伸超过等离子体电势的过渡区域不是指数的。讨论了电子电流的可能饱和度。给出了有限的数值结果;它们似乎对降低至零磁场极限的弱磁场很有用。理论的扩展 ud。

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