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Heavy Ions in RHIC — How to Get to Higher Luminosities?

机译:RHIC中的重离子-如何获得更高的光度?

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Luminosity mainly depends on the beam intensity of the circulating beams and the beam profiles at the interaction points. By either increasing the total beam current or decreasing its size the instantaneous luminosity can be increased. In addition any method to slow down beam growth and debunching processes will further improve the luminosity which can be integrated over a store. Optimizing beam cleaning procedures such as collimation or abort gap cleaning will further increase the amount of usable luminosity for experiments. This paper will give a brief introduction to some accelerator basics of interest and the luminosity as a function of beam parameters. Limitations to the achievable integrated luminosity as well as future upgrades to overcome these limitations are presented.
机译:亮度主要取决于循环光束的光束强度和相互作用点处的光束轮廓。通过增加总射束电流或减小其大小,可以提高瞬时发光度。此外,任何减慢光束增长和去光束过程的方法都将进一步改善可在商店中集成的发光度。优化光束清洁程序(例如准直或中止间隙清洁)将进一步增加实验可用的光度。本文将简要介绍一些令人感兴趣的加速器基础知识以及与光束参数有关的光度。提出了可实现的集成亮度的局限性以及克服这些局限性的未来升级。

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