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首页> 外文期刊>The European physical journal, C. Particles and fields >Charged particle production in proton-, deuteron-, oxygen- and sulphur-nucleus collisions at 200 GeV per nucleon
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Charged particle production in proton-, deuteron-, oxygen- and sulphur-nucleus collisions at 200 GeV per nucleon

机译:质子,氘核,氧和硫核碰撞中的带电粒子产生,每个核子200 GeV

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摘要

The transverse momentum and rapidity distributions of net protons and negatively charged hadrons have been measured for minimum bias proton-nucleus and deuteron-gold interactions, as well as central oxygen-gold and sulphur-nucleus collisions at 200 GeV per nucleon. The rapidity density of net protons at midrapidity in central nucleus-nucleus collisions increases both with target mass for sulphur projectiles and with the projectile mass for a gold target. The shape of the rapidity distributions of net protons forward of midrapidity for d+Au and central S+Au collisions is similar. The average rapidity loss is larger than 2 units of rapidity for reaction with the gold target. The transverse momentum spectra of net protons for all reactions can be described by a thermal distribution with 'temperatures' between 145 ± 11 MeV (p+S interactions) and 244 ± 43 MeV (central S+Au collisions). The multiplicity of negatively charged hadrons increases with the mass of the colliding system. The shape of the transverse momentum spectra of negatively charged hadrons changes from minimum bias p+p and p+S interactions to p+Au and central nucleus-nucleus collisions. The mean transverse momentum is almost constant in the vicinity of midrapidity and shows little variation with the target and projectile masses. The average number of produced negatively charged hadrons per participant baryon increases slightly from p+p, p+A to central S+S, Ag collisions.
机译:已测量了净质子和带负电的强子的横向动量和速度分布,以测得最小偏置质子-核和氘-金相互作用,以及每个核子200 GeV的中心氧-金和硫-核碰撞。中心核-核碰撞中的中间快时,净质子的快速密度随硫质弹丸的靶质量和金质靶的弹丸质量而增加。对于d + Au和中心S + Au碰撞,在快中点之前的净质子速度分布的形状相似。与金靶反应的平均速度损失大于2个速度单位。对于所有反应,净质子的横向动量谱可以通过“温度”介于145±11 MeV(p + S相互作用)和244±43 MeV(中心S + Au碰撞)之间的热分布来描述。带负电的强子的多样性随着碰撞系统的质量而增加。带负电的强子的横向动量谱的形状从最小偏差p + p和p + S相互作用变为p + Au和中心核-核碰撞。在中速附近,平均横向动量几乎是恒定的,并且与目标和弹丸质量几乎没有变化。每个参与者重子产生的带负电的强子的平均数量从p + p,p + A到中心S + S,Ag碰撞略有增加。

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