Lawrence Berkeley National Laboratory, One Cyclotron Road, Berkeley, California 94720, USA.
Phys Rev Lett. 2012 Dec 28;109(26):264801. doi: 10.1103/PhysRevLett.109.264801. Epub 2012 Dec 27.
We present the concept and results of pseudo-single-bunch (PSB) operation--a new operational mode at the advanced light source--that can greatly expand the capabilities of synchrotron light sources to carry out dynamics and time-of-flight experiments. In PSB operation, a single electron bunch is displaced transversely from the other electron bunches using a short-pulse, high-repetition-rate kicker magnet. Experiments that require light emitted only from a single bunch can stop the light emitted from the other bunches using a collimator. Other beam lines will only see a small reduction in flux due to the displaced bunch. As a result, PSB eliminates the need to schedule multibunch and timing experiments during different running periods. Furthermore, the time spacing of PSB pulses can be adjusted from milliseconds to microseconds with a novel "kick-and-cancel" scheme, which can significantly alleviate complications of using high-power choppers and substantially reduce the rate of sample damage.
我们提出了伪单束(PSB)操作的概念和结果——这是一种在先进光源中采用的新操作模式,它可以极大地扩展同步加速器光源进行动力学和飞行时间实验的能力。在 PSB 操作中,使用短脉冲、高重复率的 kicker 磁铁将单个电子束从其他电子束横向移动。对于需要仅从单个束中发射光的实验,可以使用准直器来阻止其他束中的光发射。其他光束线只会由于偏移束而导致通量略有减少。因此,PSB 无需在不同的运行周期内安排多束和定时实验。此外,PSB 脉冲的时间间隔可以通过一种新颖的“踢除和取消”方案从毫秒调整到微秒,这可以显著减轻使用大功率斩波器的复杂性,并大大降低样品损坏的速度。