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High power electron diode for linear induction accelerator at a flash radiographic facility

机译:闪光射线设施下线性感应加速器的高功率电子二极管

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摘要

We investigated a new cathode design and beam transport with the EPURE axis-1 injector in order to increase the beam characteristics at 3.8 MeV, 80 ns FWHM from the 2.0 kA nominal current to 2.6 kA corresponding to an average current density of 82  A/cm^{2}. Such current increase is highly desirable for improving the x-ray dose and hence radiographic performances. To achieve this, a time-dependent model based on the particle-in-cell method was developed in order to simulate the injector. Using results from calculations based on this model, a 17.2 cm AK gap diode with a larger radius cathode (3.175 cm) was designed, manufactured and tested. Experimental and calculated currents and emittances are qualitatively compared. The study provides a detailed understanding of the beam dynamics inside this type of high current, high energy injector.
机译:我们调查了一个新的阴极设计和梁运输,使用外延轴-1喷射器,以增加3.8 mev的光束特性,从2.0ka标称电流到2.6ka对应于82 a / cm的平均电流密度的2.6ka ^ {2}。这种电流增加对于改善X射线剂量并因此的放射线表演是非常理想的。为此,开发了基于粒子内方法的时间依赖模型以模拟喷射器。使用基于该模型的计算结果,设计了一个17.2cm Ak间隙二极管,具有较大的半径阴极(3.175cm),制造和测试。实验性和计算的电流和助力的定性比较。该研究规定了对这种高电流,高能量喷射器内的梁动力学的详细了解。

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