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Tests of a prototype magnetostrictive tuner for superconductingcavities

机译:用于超导腔的原型磁致伸缩调谐器的测试

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The Continuous Electron Beam Accelerator (CEBA) uses mechanical tuners at 2 K driven by room temperature stepping motors in a feedback loop to maintain cavity frequency at 1497 MHz. A modification of the existing system was designed, replacing a passive section of the mechanical tuner with a magnetostrictive tuning element consisting of nickel rod and an industrially supplied 0.25 T superconducting solenoid. This assembly was tested with several magnetic shield configurations designed to keep the stray flux at the niobium cavity below 1 μT when the cavity was normal, to maintain cavity Q. Results of the tests, including change in cavity performance when the cavity was locally quenched near the end of the solenoid, showed that a multilayer shield of 6 mm of steel, with sheets of mu metal, niobium and mu metal spaced appropriately outside the thick steel, was effective in containing the flux, both remanent and current-driven, preventing any change in cavity Q upon cooldown or quench with an external heater near the end of the solenoid. Hysteresis attributed to the nickel magnetostrictive element was observed
机译:连续电子束加速器(CEBA)使用室温步进电机在反馈回路中驱动的2 K机械调谐器,将腔体频率保持在1497 MHz。设计了对现有系统的改进,用由镍棒和工业提供的0.25 T超导螺线管组成的磁致伸缩调谐元件代替了机械调谐器的无源部分。该组件用几种磁屏蔽配置进行了测试,这些配置设计成当腔正常时将铌腔的杂散通量保持在1μT以下,以保持腔Q。测试结果包括在腔附近局部淬火时腔性能的变化螺线管的末端表明,由6毫米厚的钢制成的多层屏蔽层,在厚钢板的外侧适当隔开一定距离的mu金属,铌和mu金属片,可以有效地容纳剩磁和电流驱动的磁通,从而防止产生任何磁通。冷却时改变腔Q或在螺线管末端附近用外部加热器淬火。观察到归因于镍磁致伸缩元件的磁滞

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