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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Measurement and parametric analysis of transverse coupled bunch instabilities for electron synchrotron radiation source Indus-2
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Measurement and parametric analysis of transverse coupled bunch instabilities for electron synchrotron radiation source Indus-2

机译:电子同步辐射源横向耦合束不稳态的测量和参数分析INDUS-2

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摘要

The performance of synchrotron radiation sources at high beam current gets often degraded due to the excitation of longitudinal and transverse coupled bunch instabilities (CBI). Hence, measurement of the coupled bunch instabilities may give insight into the performance of the machine, which in turn, may help supress these instabilities. Transverse coupled bunch instability is sensitive to the operating parameters of the accelerator such as betatron tune and sextupole magnet strength. In this paper, we report the measurement on transverse coupled bunch modes (CBM). The effect of betatron tune values and sextupole magnet strengths on transverse coupled bunch instability is discussed. For this study, betatron tune values and sextupole strengths are chosen in the vicinity of the routine operating points. With the help of this parametric study, an optimum operating point is identified in the beam operation with a minimum level of transverse coupled bunch instability. Further, an artificial neural network (ANN) is used to deduce a functional model between average transverse CBM levels and sextupole strengths.
机译:由于纵向和横向耦合束不稳定性(CBI)的激发,高光束电流在高光束电流下的同步辐射源的性能经常降低。因此,耦合束不稳定性的测量可以深入了解机器的性能,这又可以帮助抑制这些不稳定性。横向耦合束不稳定性对加速器的操作参数如Betatron调谐和Sextupole磁体强度敏感。在本文中,我们在横向耦合束模式(CBM)上报告测量。讨论了β曲调值与六克隆磁体强度对横向耦合束不稳定性的影响。对于本研究,在常规操作点附近选择BetTron调度值和Sextupole强度。在该参数研究的帮助下,在光束操作中识别了最佳操作点,其具有最小横向耦合束不稳定性。此外,人工神经网络(ANN)用于推导平均横向CBM水平和SEXTUPOLE强度之间的功能模型。

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