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Theoretical investigation of the possibility of isotope separation during motion of charged particles in the electromagnetic field of a cylindrical capacitor and a linear current flowing along its axis

机译:对圆柱形电容器的电磁场中带电粒子运动和沿其轴线流动的线性电流过程中同位素分离可能性的理论研究

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摘要

A characteristic feature of the trajectories of charges moving in constant axisymmetric radial electric and azimuthal magnetic fields, whose strengths are inversely proportional to the center from the symmetry axis is the exponential dependence of the turning points on the parameters of motion. This leads to a noticeable difference in the trajectories for isotope ions, which makes it possible to obtain a new method for their electromagnetic separation. The trajectories of isotopes being separated are studied theoretically. The conditions under which the trajectories are closed and form toroidal surfaces (storage vortex rings) have been determined earlier. These results are given for convenience in analyzing another problem, associated with the formation of such ionic toroidal vortex surfaces (stable in Wood's sense) during a streak lightning discharge in the atmosphere (ball lightning model).
机译:电荷在恒定轴对称径向电场和方位磁场中运动的轨迹的特征是,转折点与运动参数呈指数关系,其强度与对称轴的中心成反比。这导致同位素离子的轨迹明显不同,从而有可能获得一种新的电磁分离方法。从理论上研究了同位素的分离轨迹。提前确定了轨迹闭合并形成环形表面(存储涡流环)的条件。给出这些结果是为了方便分析另一个问题,该问题与大气中的条纹闪电放电(球形闪电模型)中此类离子环形涡旋表面的形成(在伍德的意义上是稳定的)有关。

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