Transverse emittance growth due to rf noise in the high-luminosity LHC crab cavities

P. Baudrenghien, T. Mastoridis
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引用次数: 20

Abstract

The high-luminosity LHC (HiLumi LHC) upgrade with planned operation from 2025 onward has a goal of achieving a tenfold increase in the number of recorded collisions thanks to a doubling of the intensity per bunch (2.2e11 protons) and a reduction of β to 15 cm. Such an increase would significantly expedite new discoveries and exploration. To avoid detrimental effects from long-range beam-beam interactions, the half crossing angle must be increased to 295 microrad. Without bunch crabbing, this large crossing angle and small transverse beam size would result in a luminosity reduction factor of 0.3 (Piwinski angle). Therefore, crab cavities are an important component of the LHC upgrade, and will contribute strongly to achieving an increase in the number of recorded collisions. The proposed crab cavities are electromagnetic devices with a resonance in the radio frequency (rf) region of the spectrum (400.789 MHz). They cause a kick perpendicular to the direction of motion (transverse kick) to restore an effective head-on collision between the particle beams, thereby restoring the geometric factor to 0.8 [K. Oide and K. Yokoya, Phys. Rev. A 40, 315 (1989).]. Noise injected through the rf/low level rf (llrf) system could cause significant transverse emittance growth and limit luminosity lifetime. In this work, a theoretical relationship between the phase and amplitude rf noise spectrum and the transverse emittance growth rate is derived, for a hadron machine assuming zero synchrotron radiation damping and broadband rf noise, excluding infinitely narrow spectral lines. This derivation is for a single beam. Both amplitude and phase noise are investigated. The potential improvement in the presence of the transverse damper is also investigated.
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高亮度LHC蟹状腔中射频噪声导致的横向发射度增长
高亮度LHC (HiLumi LHC)升级计划从2025年开始运行,其目标是实现记录的碰撞次数增加十倍,这要归功于每束强度增加一倍(2.2e11个质子)和β减少到15厘米。这样的增加将大大加快新的发现和勘探。为了避免远程光束相互作用的不利影响,必须将半交叉角增加到295微路。如果没有束蟹作用,这种大的交叉角和小的横向光束尺寸将导致0.3 (Piwinski角)的光度降低系数。因此,螃蟹腔是LHC升级的重要组成部分,将对实现记录的碰撞次数的增加做出重要贡献。所提出的蟹腔是在频谱(400.789 MHz)的射频(rf)区域具有共振的电磁装置。它们引起垂直于运动方向的踢脚(横向踢脚),以恢复粒子束之间有效的正面碰撞,从而将几何因子恢复到0.8 [K]。Oide和K. Yokoya,物理学家。Rev. 40, 315 (1989).]通过rf/低电平rf (llrf)系统注入的噪声会导致显著的横向发射度增长和限制亮度寿命。在这项工作中,推导了一个假设零同步辐射阻尼和宽带射频噪声(不包括无限窄谱线)的强子机的相位和振幅射频噪声谱与横向发射率增长率之间的理论关系。这个推导是针对单个光束的。研究了幅值噪声和相位噪声。在横向阻尼器存在的潜在改进也进行了研究。
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期刊介绍: Physical Review Special Topics - Accelerators and Beams (PRST-AB), is a peer reviewed, purely electronic journal, distributed without charge to readers and funded by contributions from national laboratories. It covers the full range of accelerator science and technology: subsystem and component technologies, beam dynamics; accelerator applications; and design, operation, and improvement of accelerators used in science and industry. This includes accelerators for high-energy and nuclear physics, synchrotron radiation production, spallation neutron sources, medical therapy, and intense beam applications.
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