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Experimental study of electron vortex structures in an electrostatic plasma lens

机译:静电等离子体透镜中电子涡旋结构的实验研究

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Results are presented from experimental studies of electron vortex bunches in a cold ion-beam plasma consisting of strongly magnetized electrons and a beam of almost free positive ions. The existence of electron vortex bunches was detected from local minima of the electric potential on surfaces perpendicular to the magnetic field lines. It is found that the vortices have the form of magnetic-field-aligned filaments, in which electrons rotate with a velocity significantly exceeding both the velocity of the vortex as a whole and the electron velocity in the ambient plasma. It is shown that, in a sufficiently strong magnetic field, the accumulation of electrons in the vortices terminates when the condition for the longitudinal confinement of electrons by the electric field fails to hold.
机译:结果来自冷离子束等离子体中电子涡旋束的实验研究,该等离子体由强磁化电子和几乎不含正离子的束组成。从垂直于磁场线的表面上的电势的局部最小值检测出电子涡旋束的存在。已经发现,涡流具有磁场对准的细丝的形式,其中电子以大大超过整个涡流的速度和周围等离子体中的电子速度的速度旋转。可以看出,在足够强的磁场中,当通过电场对电子进行纵向限制的条件不能成立时,涡旋中的电子积累就会终止。

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