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五夸克态的实验发现 被引量:2

Discoveries of the pentaquark states
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摘要 2015年,大型强子对撞机上的LHCb实验在■衰变末态中,发现J/ψ和p不变质量谱中存在明显的增强结构.通过达里兹图分析,首次在实验上确认存在由5个夸克组成的粒子.全振幅分析表明,至少需要两个五夸克态才能很好地描述数据,这两个五夸克态被命名为Pc(4450)和Pc(4380). 2019年,利用9 fb–1积分亮度的数据,并采用重新优化了的选择条件, LHCb实验再次研究■衰变末态的J/ψ和p不变质量谱,发现了一个新的五夸克态Pc(4312),同时观测到之前发现的Pc(4450)是两个质量相邻窄共振态Pc(4440)和Pc(4457)的叠加.发现包含粲夸克偶素的五夸克粒子是对传统强子组成的重要突破,其内部结构有很多种可能性,如紧束缚的五夸克态、重子-介子分子态等或者它们的叠加态.作为国际高能物理学界的前沿方向,对五夸克粒子结构的研究为探索强相互作用非微扰性质打开了一扇新的窗口. Protons and neutrons are not fundamental particles, instead are formed by quarks. Thousands of multi-quark particles were discovered in cosmic rays or particle accelerators. However, within the past decades after the quark model was proposed by Gell-Mann and Zweig, only two categories of strongly interacting particles were known: Baryons(such as protons and neutrons) that are made from three quarks, and mesons that are made from one quark and one antiquark. But what other configurations of quarks and antiquarks can form a particle? This question is theoretically difficult to answer. Yet new particles with different combinations of quarks keep popping up in experiments. In 2015, the best evidence for the existence of an exotic type of particle called as pentaquark, a never-before-seen formation of five quarks, was discovered by physicists working on the Large Hadron Collider beauty(LHCb) experiment at European Organization for Nuclear Research(CERN). The detection of this particle is a major breakthrough in learning more about the nature of the strong forces that bound quarks together.In a sample of about 26000 ■ decays collected by the LHCb detector, a significant enhancement structure was observed in the J/ψp mass distribution. The pentaquark signal populated well separatedly from those contributions of■on the "Dalitz" plot using the K–p and J/ψp invariant mass-squared as independent variables. The amplitude analysis revealed two pentaquark states were needed to describe dataset. They were formally named as Pc(4450)+and Pc(4380)+with statistical significances greater than 9 standard deviations: One has a mass of(4449.8±1.7±2.5) Me V and a width of(39±5±19) Me V, while the other is wider, with a mass of(4380±8±29) Me V and a width of(205±18±86) Me V.Both pentaquarks that LHCb physicists observed decaying strongly into a J/ψ particle and a proton, must have a minimal quark content of ccuud, and thus are charmonium pentaquarks.Recently the analysis has been reoptimized based on the data collected to date. A sample of ■decays was selected, nine times more than those used in the previous analysis. A new pentaquark state Pc(4312) was discovered with a mass near 4312 Me V. The Pc(4450) state was found to be the superposition of two nearby states at 4440 and 4457 Me V respectively.In an attempt to interpret the discoveries by the LHCb experiment, the pentaquark was conjectured as a tightly bound system of all five quarks, or a weakly bound "molecular" system of a baryon and a meson.Accurate description of a multi-quark system using the theory of the strong force and quantum chromodynamics(QCD)is an extremely difficult problem. In fact, there are many combinations how five quarks are bound within the pentaquark.The five quarks could be tightly bound within a single structure, for example. Another possibility is that a quark and an antiquark are bound together to form a meson and the remaining three quarks form a baryon. The meson and baryon could then be bound to each other to create a structure resembling a subatomic molecule.Exploring the structure of pentaquarks as one of novel frontiers in high energy physics paves a new era to study the nature of strong interactions, which is an important stepping-stone in our good understanding of the strong force, the least well known of the four forces in nature.
作者 高原宁 Yuanning Gao(State Key Laboratory of Nuclear Physics and Technology,Peking University,Beijing 100871,China;School of Physics,Peking University,Beijing 100871,China)
出处 《科学通报》 EI CAS CSCD 北大核心 2020年第27期2933-2940,共8页 Chinese Science Bulletin
基金 国家自然科学基金(11575091)资助。
关键词 夸克 强子 LHCb实验 五夸克态 quark hadron LHCb experiment pentaquark
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