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X-ray dose distribution measurements for electron-beam optimization on the Mercury inductive voltage adder

机译:在汞感应电压加法器上进行电子束优化的X射线剂量分布测量

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TLDs, x-ray pin diodes and an x-ray pinhole camera are used to measure the x-ray dose distributions. Anode current data are presented which show that electron losses to the insert and to the outer-conductor wall increase with AK gap, in agreement with pinhole camera measurements. Pin diode signals are analyzed to determine beam dynamics during the pulse. TLD data are presented which show that, as the AK gap increases, the angular dose distribution narrows and that the on-axis dose increases, until the 43-cm AK gap configuration. Here, axial dose decreases as electron losses to the insert and vacuum chamber wall override any further benefit due to smaller incidence angle for electrons striking the anode. Bremsstrahlung produced by electrons at large radius impacting the walls is removed from the x-ray beam by a thick steel collimator. Though wall losses with a small, 23-cm gap are low, LSP/ITS simulations predict large electron impact angles, which would reduce the on-axis dose downstream of the diode. Research has begun to modify such smaller-gap diodes to magnetically steer electrons to converter impact angles closer to the normal.
机译:TLD,X射线针状二极管和X射线针孔照相机用于测量X射线剂量分布。给出了阳极电流数据,该数据表明,与针孔相机测量结果一致,电子向插入件和外导体壁的损耗随AK间隙的增加而增加。分析Pin二极管信号以确定脉冲期间的射束动力学。呈现的TLD数据表明,随着AK间隙的增加,角剂量分布变窄并且轴向剂量增加,直到43厘米的AK间隙配置为止。在此,轴向剂量降低,这是由于电子撞击阳极的入射角较小,从而使电子损失到插入件和真空室壁上而导致的轴向剂量降低,从而使轴向剂量降低。电子通过大半径撞击壁产生的致辐射通过厚钢准直仪从X射线束中去除。尽管具有23厘米小的间隙的壁损耗很低,但LSP / ITS模拟预测大的电子撞击角,这将减少二极管下游的同轴剂量。研究已经开始修改这种较小间隙的二极管,以电磁方式操纵电子,以使转换角更接近法线。

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