科技报告详细信息
High intensity protons in RHIC
Montag, C. ; Ahrens& ; #44 ; L. ; Blaskiewicz& ; #44 ; M. ; Brennan& ; #44 ; J.M. ; Drees& ; #44 ; K.A. ; Fischer& ; #44 ; W. ; Huang& ; #44 ; H. ; Minty& ; #44 ; M. ; Robert-Demolaize& ; #44 ; G. ; Thieberger& ; #44 ; P. ; Yip& ; #44 ; K.
Brookhaven National Laboratory. Collider-Accelerator Department.
关键词: Protons;    Shutdown Relativistic Heavy Ion Collider;    Luminosity;    43 Particle Accelerators;    Design;   
RP-ID  :  BNL--96819-2012-IR
RP-ID  :  DE-AC02-98CH10886
RP-ID  :  1039650
美国|英语
来源: UNT Digital Library
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【 摘 要 】

During the 2012 summer shutdown a pair of electron lenses will be installed in RHIC, allowing the beam-beam parameter to be increased by roughly 50 percent. To realize the corresponding luminosity increase bunch intensities have to be increased by 50 percent, to 2.5 {center_dot} 10{sup 11} protons per bunch. We list the various RHIC subsystems that are most affected by this increase, and propose beam studies to ensure their readiness. The proton luminosity in RHIC is presently limited by the beam-beam effect. To overcome this limitation, electron lenses will be installed in IR10. With the help of these devices, the headon beam-beam kick experienced during proton-proton collisions will be partially compensated, allowing for a larger beam-beam tuneshift at these collision points, and therefore increasing the luminosity. This will be accomplished by increasing the proton bunch intensity from the presently achieved 1.65 {center_dot} 10{sup 11} protons per bunch in 109 bunches per beam to 2.5 {center_dot} 10{sup 11}, thus roughly doubling the luminosity. In a further upgrade we aim for bunch intensities up to 3 {center_dot} 10{sup 11} protons per bunch. With RHIC originally being designed for a bunch intensity of 1 {center_dot} 10{sup 11} protons per bunch in 56 bunches, this six-fold increase in the total beam intensity by far exceeds the design parameters of the machine, and therefore potentially of its subsystems. In this note, we present a list of major subsystems that are of potential concern regarding this intensity upgrade, show their demonstrated performance at present intensities, and propose measures and beam experiments to study their readiness for the projected future intensities.

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