Physical Review Accelerators and Beams · 2016 · 59 citations · 3 references
Numerous Prototype ClicEngineeringRf PulsesMechanicsMechanical EngineeringHigh GradientStructural AnalysisComputer EngineeringStructural DesignConditioning TimeStructural OptimizationComputational MechanicsStructural MechanicsPulse PowerParticle AcceleratorStructural EngineeringAccelerator Technology
Accelerating gradients in excess of $100\text{ }\text{ }\mathrm{MV}/\mathrm{m}$, at very low breakdown rates, have been successfully achieved in numerous prototype CLIC accelerating structures. The conditioning and operational histories of several structures, tested at KEK and CERN, have been compared and there is clear evidence that the conditioning progresses with the number of rf pulses and not with the number of breakdowns. This observation opens the possibility that the optimum conditioning strategy, which minimizes the total number of breakdowns the structure is subject to without increasing conditioning time, may be to never exceed the breakdown rate target for operation. The result is also likely to have a strong impact on efforts to understand the physical mechanism underlying conditioning and may lead to preparation procedures which reduce conditioning time.
3
High gradient test at Nextef and high-power long-term operation of devices
Shuji Matsumoto, Yasuo Higashi, T. Higo et al. · Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment · 2011 · 18 citations
Low-power Electronics, Electrical Engineering, Engineering +10