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Dual-cavity beam arrival time monitor design for the Shanghai soft X-ray FEL facility 被引量:1

Dual-cavity beam arrival time monitor design for the Shanghai soft X-ray FEL facility
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摘要 Free electron lasers provide high-power and ultrashort pulses with extreme brightness. In order to improve a facility's capabilities and explore the possibility of performing high-resolution time-resolved experiments, a beam arrival time resolution under 100 fs is required. In this article, a novel beam arrival time monitor(BAM)equipped with two cavities has been designed and a beam flight time measurement scheme based on the BAM prototype has been proposed to estimate phase jitter in the signal measurement system. The two BAM cavities work at different frequencies and the frequency difference is designed to be 35 MHz. Therefore, a self-mixing intermediate frequency signal can be generated using the two cavities. The measured beam flight time shows a temporal deviation of 37 fs(rms). Free electron lasers provide high-power and ultrashort pulses with extreme brightness. In order to improve a facility's capabilities and explore the possibility of performing high-resolution time-resolved experiments, a beam arrival time resolution under 100 fs is required. In this article, a novel beam arrival time monitor(BAM)equipped with two cavities has been designed and a beam flight time measurement scheme based on the BAM prototype has been proposed to estimate phase jitter in the signal measurement system. The two BAM cavities work at different frequencies and the frequency difference is designed to be 35 MHz. Therefore, a self-mixing intermediate frequency signal can be generated using the two cavities. The measured beam flight time shows a temporal deviation of 37 fs(rms).
出处 《Nuclear Science and Techniques》 SCIE CAS CSCD 2019年第5期14-21,共8页 核技术(英文)
基金 supported by the National Natural Science Foundation of China(No.11575282)
关键词 BEAM ARRIVAL TIME MONITOR Dual-cavities BEAM flight TIME SELF-MIXING Beam arrival time monitor Dual-cavities Beam flight time Self-mixing
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