Jing Liu, Quan-Yun Guo, Qi Wu, Jun He, Dian-Yong Chen
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引用次数: 0
摘要
在本研究中,我们提议探索质子靶上高能先驱和κ子诱导反应中底和底奇异介子的产生。横截面是用重夸克极限和手性对称构造的有效拉格朗日来评估的。我们的估计表明,在 \(P_\pi =80\) GeV,B(5279)、\(B^*(5325)\)、\(B_0^*(5722)\)、\(B_1^\prime (5716)\)、\(B_1(5721)\)和\(B_2^*(5747)\)生产过程的截面估计为3.19-86.26、1.86-51.29、0.88-24.33、0.86-23.69、162.35-4477.66 和 57.16-1604.43 nb。此外,相应的底-奇异介子产生过程的截面也非常相似。从重夸克有效理论的角度来看,底层介子和底层-奇异介子的截面比应该是相似的,目前的估计与重夸克极限的预期是一致的。特别是,与同一双特中的态相关的截面比是一阶的。与 T 双重态相关的截面比与 S 双重态相关的截面大两个数量级。
Productions of bottom and bottom-strange mesons in pion and kaon induced reactions
In the present work, we propose to explore the productions of the bottom and bottom-strange mesons in the high-energy pion and kaon-induced reactions on a proton target. The cross sections are evaluated with an effective Lagrangian constructed by the heavy-quark limit and chiral symmetry. Our estimations show that at \(P_\pi =80\) GeV, the cross sections for B(5279), \(B^*(5325)\), \(B_0^*(5722)\), \(B_1^\prime (5716)\), \(B_1(5721)\) and \(B_2^*(5747)\) production processes are estimated to be 3.19–86.26, 1.86–51.29, 0.88–24.33, 0.86–23.69, 162.35–4477.66, and 57.16–1604.43 nb, respectively, where uncertainties arise from the model parameter. In addition, the cross sections for the corresponding bottom-strange mesons production processes are very similar. From the heavy quark effective theory point of view, the ratios between the cross sections for bottom mesons and bottom-strange mesons should be similar and the present estimations are consistent with the expectation of heavy quark limit. In particular, the cross-section ratios related to the states in the same doublets are of order one. The cross sections related to the states in the T doublets are about two orders larger than those related to the states in the S doublets.
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.