IF 4.2 2区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS The European Physical Journal C Pub Date : 2025-02-19 DOI:10.1140/epjc/s10052-025-13793-y
ALICE Collaboration
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引用次数: 0

摘要

由于产生了玻色-爱因斯坦相关信号,对相同的离子对进行飞秒研究特别适合研究粒子发射的有效源函数。在大型强子对撞机的小型对撞系统中,尤其是在pp系统中,大部分的小离子都是在共振衰变中产生的,这极大地影响了源的轮廓和大小。在这项工作中,我们明确地模拟了这种效应,以便从ALICE测量的带电(\uppi \)-(\uppi \)相关中提取出在(\sqrt{s}~=~13\)TeV的pp对撞中的原始源。我们证明了高斯原始源的假设与数据是相容的,而且由于共振而产生的有效源是近似指数的,这与之前在大型强子对撞机上的测量结果是一致的。通过应用同样的方法来描述(textrm{K}\)-(textrm{p}\)对的原始源,我们进一步研究了pp对撞中强子发射的普遍性。原始源的大小是作为成对横向质量(m(m_textrm{T}}\)的函数来评估的,从而观察到了\(\uppi \)-\(\uppi \)和\(textrm{K}\)-\(\textrm{p}}\)的共同缩放,这表明存在集体效应。此外,目前的结果与ALICE在高倍率pp对撞中测量到的(m_{textrm{T}})-(textrm{p}})和(p(-\Lambda)原始源的缩放是一致的,这为在大型强子对撞机的小对撞系统中所有强子的共同发射源的存在提供了额外的证据。这将允许高精度地确定任何强子-强子对的源函数,从而获得产生量较少的强子对(如奇异粒子或粲粒子)之间可能的终态相互作用的特性。
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Common femtoscopic hadron-emission source in pp collisions at the LHC

The femtoscopic study of pairs of identical pions is particularly suited to investigate the effective source function of particle emission, due to the resulting Bose–Einstein correlation signal. In small collision systems at the LHC, pp in particular, the majority of the pions are produced in resonance decays, which significantly affect the profile and size of the source. In this work, we explicitly model this effect in order to extract the primordial source in pp collisions at \(\sqrt{s}~=~13\) TeV from charged \(\uppi \)\(\uppi \) correlations measured by ALICE. We demonstrate that the assumption of a Gaussian primordial source is compatible with the data and that the effective source, resulting from modifications due to resonances, is approximately exponential, as found in previous measurements at the LHC. The universality of hadron emission in pp collisions is further investigated by applying the same methodology to characterize the primordial source of \(\textrm{K}\)\(\textrm{p}\) pairs. The size of the primordial source is evaluated as a function of the transverse mass (\(m_{\textrm{T}}\)) of the pairs, leading to the observation of a common scaling for both \(\uppi \)\(\uppi \) and \(\textrm{K}\)\(\textrm{p}\) , suggesting a collective effect. Further, the present results are compatible with the \(m_{\textrm{T}}\) scaling of the \(\textrm{p}\)\(\textrm{p}\) and p\(-\Lambda \) primordial source measured by ALICE in high multiplicity pp collisions, providing additional evidence for the presence of a common emission source for all hadrons in small collision systems at the LHC. This will allow the determination of the source function for any hadron–hadron pairs with high precision, granting access to the properties of the possible final-state interaction among pairs of less abundantly produced hadrons, such as strange or charmed particles.

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来源期刊
The European Physical Journal C
The European Physical Journal C 物理-物理:粒子与场物理
CiteScore
8.10
自引率
15.90%
发文量
1008
审稿时长
2-4 weeks
期刊介绍: Experimental Physics I: Accelerator Based High-Energy Physics Hadron and lepton collider physics Lepton-nucleon scattering High-energy nuclear reactions Standard model precision tests Search for new physics beyond the standard model Heavy flavour physics Neutrino properties Particle detector developments Computational methods and analysis tools Experimental Physics II: Astroparticle Physics Dark matter searches High-energy cosmic rays Double beta decay Long baseline neutrino experiments Neutrino astronomy Axions and other weakly interacting light particles Gravitational waves and observational cosmology Particle detector developments Computational methods and analysis tools Theoretical Physics I: Phenomenology of the Standard Model and Beyond Electroweak interactions Quantum chromo dynamics Heavy quark physics and quark flavour mixing Neutrino physics Phenomenology of astro- and cosmoparticle physics Meson spectroscopy and non-perturbative QCD Low-energy effective field theories Lattice field theory High temperature QCD and heavy ion physics Phenomenology of supersymmetric extensions of the SM Phenomenology of non-supersymmetric extensions of the SM Model building and alternative models of electroweak symmetry breaking Flavour physics beyond the SM Computational algorithms and tools...etc.
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