Dispersive πK→πK and ππ→KK̄ amplitudes from scattering data, threshold parameters, and the lightest strange resonance κ or K0∗(700)

IF 23.9 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Physics Reports Pub Date : 2022-07-26 DOI:10.1016/j.physrep.2022.03.004
José R. Peláez , Arkaitz Rodas
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引用次数: 9

Abstract

We discuss the simultaneous dispersive analyses of πKπK and ππKK̄ scattering data and the κ/K0(700) resonance. The unprecedented statistics of present and future hadron experiments, modern lattice QCD calculations, and the wealth of new states and decays require such precise and model-independent analyses to describe final state interactions. We review the existing and often conflicting data and explain in detail the derivation of the relevant dispersion relations, maximizing their applicability range. Next, we review and extend the caveats on some data, showing their inconsistency with dispersion relations. Our main result is the derivation and compilation of precise amplitude parameterizations constrained by several πKπK and ππKK̄ dispersion relations. These constrained parameterizations are easily implementable and provide the rigor and accuracy needed for modern experimental and phenomenological hadron physics. As applications, after reviewing their status and interest, we will provide new precise threshold and subthreshold parameters and review our dispersive determination of the controversial κ/K0(700) resonance and other light-strange resonances.

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散射数据的色散πK→πK和ππ→KK→振幅,阈值参数,以及最轻的奇异共振κ或K0∗(700)
讨论了πK→πK和ππ→KK→散射数据的同时色散分析和κ/K0 *(700)共振。现在和未来的强子实验的空前统计,现代晶格QCD计算,以及新状态和衰变的财富需要如此精确和模型独立的分析来描述最终状态的相互作用。我们回顾了现有的和经常冲突的数据,并详细解释了相关色散关系的推导,最大限度地扩大了它们的适用范围。接下来,我们回顾并扩展了一些数据上的警告,表明它们与离散关系不一致。我们的主要成果是推导和编制了由πK→πK和ππ→KK→色散关系约束的精确振幅参数化。这些约束参数化很容易实现,并提供现代实验和现象学强子物理所需的严谨性和准确性。作为应用,在回顾了它们的现状和兴趣之后,我们将提供新的精确阈值和亚阈值参数,并回顾我们对有争议的κ/K0∗(700)共振和其他光奇异共振的色散测定。
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来源期刊
Physics Reports
Physics Reports 物理-物理:综合
CiteScore
56.10
自引率
0.70%
发文量
102
审稿时长
9.1 weeks
期刊介绍: Physics Reports keeps the active physicist up-to-date on developments in a wide range of topics by publishing timely reviews which are more extensive than just literature surveys but normally less than a full monograph. Each report deals with one specific subject and is generally published in a separate volume. These reviews are specialist in nature but contain enough introductory material to make the main points intelligible to a non-specialist. The reader will not only be able to distinguish important developments and trends in physics but will also find a sufficient number of references to the original literature.
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