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Beam dynamics and proton beam test of a 3.4 MeV deuteron IH linac

机译:3.4 MeV氘核IH直线加速器的束动力学和质子束测试

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We are studying HI type linacs for applications in medicine and industry. In the framework of an international cooperation, we designed and tested a 3.4 MeV deuteron linac for PET application. For keeping the costs low, we did not include any focussing focussing elements inside the linac. Radial and longitudinal focussing are dnoe with a kind of Alternating Phase Focussing (APF). Simulatons are doen with a beam dynamics program to adjust the optimal position of every single gap. In order to achieve a flat gap voltage distribution the linac is constructed in several segments with differnt diameters to compensate capacity changes along the acceleratory axis. A proton beam was successfully sccelerated ans analysed. The RF power consumtion was 3 kW for a total acceleration voltage of 1.6 MeV, which corresponds to an effective shunt impedance of 420 M #OMEGA# /m.
机译:我们正在研究用于医学和工业领域的HI型直线加速器。在国际合作的框架内,我们设计并测试了3.4 MeV氘代线性加速器,用于PET。为了保持低成本,我们在直线加速器内部未包含任何聚焦元件。径向和纵向聚焦是一种交替相位聚焦(APF)的方法。 Simulatons使用光束动力学程序进行调整,以调整每个间隙的最佳位置。为了获得平坦的间隙电压分布,直线加速器被构造成具有不同直径的若干段,以补偿沿加速轴的容量变化。质子束成功地加速了分析。对于1.6 MeV的总加速电压,RF功耗为3 kW,这相当于420 M#OMEGA#/ m的有效分流阻抗。

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