首页> 外文会议>Electromagnetic Compatibility Symposium Record, 1968 IEEE >Interaction of cylindrically-symmetric relativistic electron beams with planar targets and plasmas: Theory and applications
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Interaction of cylindrically-symmetric relativistic electron beams with planar targets and plasmas: Theory and applications

机译:圆柱对称相对论电子束与平面靶和等离子体的相互作用:理论与应用

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A diffusion theory for the collisional interaction of relativistic electron beams with high-atomic-number plasmas* is used to develop analytical expressions for the beam-momentum distribution function in a slab target or plasma for the case of a normally-incident, well-collimated, monoenergetic beam with any radial profile. Moments of the distribution function are calculated for a Gaussian incident profile of arbitrary width. Using these, contour plots of energy deposition and current flow are determined. Bremsstrahlung intensity profiles corresponding to pinhole photographs of tightly-pinched beams are presented for various ratios of incident beam width to electron range. Theoretical deposition profiles, current transmission, and energy coupling of beam to target are compared with the results of Monte Carlo calculations.
机译:相对论电子束与高原子序数等离子体的碰撞相互作用的扩散理论*,用于开发板状靶或等离子体中的束动量分布函数的解析表达式,以用于正常入射,高度准直的情况,具有任何径向轮廓的单能光束。针对任意宽度的高斯入射轮廓计算分布函数的矩。使用这些,可以确定能量沉积和电流流动的等高线图。对于入射束宽度与电子范围的各种比率,给出了对应于紧缩束的针孔照片的致辐射强度曲线。将理论沉积轮廓,电流传输和束与目标的能量耦合与蒙特卡洛计算的结果进行了比较。

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