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INFLUENCE OF PROTON BEAM EMITTANCES ON PARTICLE PRODUCTION OFF A MUON COLLIDER TARGET

机译:质子束射出对μ子撞机目标粒子生产的影响

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A free-mercury-jet or a free-gallium-jet is considered for the pion-production target at a Muon Collider or Neutrino Factory. We previously optimized the geometric parameters of the beam and target to maximize particle production by incoming protons with kinetic energies (KE) between 2 and 16 GeV, using the MARS 15 code, assuming a parallel proton beam with Gaussian transverse profile. In this paper, we extend our optimization to focused proton beams with various transverse emittances. For the special cases of proton beams with geometric emittances of 2.5, 5 or 10 μm-rad and a kinetic energy of 8 GeV, we optimized the geometric parameters of the target: the radius of the proton beam, the radius of the liquid jet, the crossing angle between the jet and the proton beam, and the incoming proton beam angle. We also studied the influence of a shift of the beam focal point relative to the intersection point of the beam and the jet.
机译:在Muon撞机或中微子工厂考虑搭配汞喷射或自由镓喷射器。我们之前优化了光束的几何参数和目标,以使用MARS 15代码在2到16个GEV之间的传入质子(Ke)来最大化颗粒生产,所述MARS 15代码假设具有高斯横向剖面的并联质子梁。在本文中,我们将我们的优化扩展到具有各种横向发射的聚焦质子束。对于带有2.5,5或10μm-rad的几何发射的质子梁和8个GEV的动能的质子梁的特殊情况,我们优化了目标的几何参数:质子束的半径,液体射流的半径,射流和质子梁之间的交叉角度以及进入质子束角。我们还研究了光束焦点相对于光束和喷射的交叉点的影响的影响。

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