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[n] J. Ma and F. Qiu, “Virtual cavity probe for the real-time identification of cavity burst-noise type in superconducting radio-frequency systems”, presented at the SRF'25, Tokyo, Japan, Sep. 2025, paper THP38, unpublished.
[n] J. I. M. Botman et al., “Initial Design of a phi Factory”, in Proc. EPAC'88, Rome, Italy, Jun. 1988, pp. 311-314.
[n] S. A. Bogacz, “The LHeC ERL - Optics and Performance Optimizations”, in Proc. ERL'19, Berlin, Germany, Sep. 2019, pp. 34-38. doi:10.18429/JACoW-ERL2019-TUCOXBS04
[n] M. Marongiu et al., “Simulation of the Transition Radiation Transport Through an Optic System”, in Proc. IPAC'19, Melbourne, Australia, May 2019, pp. 3059-3062. doi:10.18429/JACoW-IPAC2019-WEPRB106
[n] N. C. Shipman et al., “A Ferroelectric Fast Reactive Tuner (FE-FRT) to Combat Microphonics”, in Proc. ERL'19, Berlin, Germany, Sep. 2019, pp. 42-47. doi:10.18429/JACoW-ERL2019-TUCOZBS02
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References
- J. Ma and F. Qiu, “Virtual cavity probe for the real-time identification of cavity burst-noise type in superconducting radio-frequency systems”, presented at the 22st International Conference on RF Superconductivity (SRF'25), Tokyo, Japan, Sep. 2025, paper THP38, unpublished.
- J. I. M. Botman et al., “Initial Design of a phi Factory”, in Proc. 1st European Particle Accelerator Conf. (EPAC'88), Rome, Italy, Jun. 1988, pp. 311-314.
- S. A. Bogacz, “The LHeC ERL - Optics and Performance Optimizations”, in Proc. 63rd Advanced ICFA Beam Dynamics Workshop on Energy Recovery Linacs (ERL'19), Berlin, Germany, Sep. 2019, pp. 34-38.
- M. Marongiu et al., “Simulation of the Transition Radiation Transport Through an Optic System”, in Proc. 10th Int. Particle Accelerator Conf. (IPAC'19), Melbourne, Australia, May 2019, pp. 3059-3062.
- N. C. Shipman et al., “A Ferroelectric Fast Reactive Tuner (FE-FRT) to Combat Microphonics”, in Proc. 63rd Advanced ICFA Beam Dynamics Workshop on Energy Recovery Linacs (ERL'19), Berlin, Germany, Sep. 2019, pp. 42-47.
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