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Application of Magnetically Insulated Transmission Lines for high current. High voltage electron beam accelerators

机译:电磁绝缘传输线在大电流中的应用。高压电子束加速器

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Self Magnetically Insulated Transmission Lines (MITL) adders have been used successfully in a number of Sandia accelerators such as HELIA,1 HERMES III,2 and SABRE.3 Most recently we used a MITL adder in the RADLAC/SMILE electron beam accelerator to produce high quality, small radius (rb < 2 cm), 11 to 15 MeV, 50 to 100-kA beams with a small transverse velocity v⊥/c = β ⊥ ≤ 0.14 In RADLAC/SMILE, a coaxial MITL passed through the eight, 2 MV vacuum envelopes. The MITL summed the voltages of all eight feeds to a single foilless diode. The experimental results are in good agreement with code simulations. Our success with the MITL technology led us to investigate the application to higher energy accelerator designs. We have a conceptual design for a cavity-fed MITL that sums the voltages from 100 identical, inductively-isolated cavities.5 Each cavity is a toroidal structure that is driven simultaneously by four 8-ohm pulse-forming lines, providing a 1-MV voltage pulse to each of the 100 cavities. The point design accelerator is 100 MV, 500 kA, with a 30–50-ns FWHM output pulse.
机译:自磁绝缘传输线(MITL)加法器已成功用于许多Sandia加速器中,例如HELIA, 1 HERMES III, 2 和SABRE。 3 < / sup>最近,我们在RADLAC / SMILE电子束加速器中使用了MITL加法器来产生高质量,小半径(rb <2 cm),11至15 MeV,50至100kA的电子束以及较小的横向速度v⊥ / c =β⊥≤0.1 4 在RADLAC / SMILE中,同轴MITL穿过八个2 MV真空封套。 MITL对单个无箔二极管的所有八种馈电的电压求和。实验结果与代码仿真非常吻合。我们在MITL技术上的成功使我们开始研究在高能加速器设计中的应用。我们有一个空腔馈送MITL的概念设计,该空腔将来自100个相同的电感隔离空腔的电压相加。 5 每个空腔都是一个环形结构,由四个8欧姆脉冲形成同时驱动线,为100个腔中的每个腔提供一个1-MV电压脉冲。点设计加速器为100 MV,500 kA,具有30–50 ns的FWHM输出脉冲。

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