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Measurement of pion, kaon and proton production in proton–proton collisions at [equation] TeV

机译:在[等式] TeV下质子-质子碰撞中离子,钾和质子产生的测量

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The measurement of primary (pi ^{pm }), (K^{pm }), (p) and ({overline{{p}}}) production at mid-rapidity ((|y| <) 0.5) in proton–proton collisions at (sqrt{s})(=) 7 TeV performed with a large ion collider experiment at the large hadron collider (LHC) is reported. Particle identification is performed using the specific ionisation energy-loss and time-of-flight information, the ring-imaging Cherenkov technique and the kink-topology identification of weak decays of charged kaons. Transverse momentum spectra are measured from 0.1 up to 3 GeV/(c) for pions, from 0.2 up to 6 GeV/(c) for kaons and from 0.3 up to 6 GeV/(c) for protons. The measured spectra and particle ratios are compared with quantum chromodynamics-inspired models, tuned to reproduce also the earlier measurements performed at the LHC. Furthermore, the integrated particle yields and ratios as well as the average transverse momenta are compared with results at lower collision energies.
机译:质子中速((| y | <)0.5)处的初生(pi ^ {pm}),(K ^ {pm}),(p)和({overline {{p}}})生产的测量据报道,在大型强子对撞机(LHC)上通过大型离子对撞机实验在(sqrt {s})(=)7 TeV处发生了质子碰撞。使用特定的电离能损失和飞行时间信息,环形成像Cherenkov技术以及带电kaon的弱衰变的纽结拓扑结构识别来执行粒子识别。质子的横向动量谱的测量范围是0.1至3 GeV /(c),质子从0.2至6 GeV /(c)和质子从0.3至6 GeV /(c)。将测得的光谱和粒子比率与量子色动力学启发的模型进行比较,调整后的模型还可以重现LHC进行的早期测量。此外,将积分的颗粒产率和比率以及平均横向动量与较低碰撞能量下的结果进行比较。

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