Search of hybrids in multi-meson final states with the GlueX experiment at the ThomasJefferson National Accelerator Facility (JLab)
在 ThomasJefferson 国家加速器设施 (JLab) 中通过 GlueX 实验搜索多介子最终态的杂化物
基本信息
- 批准号:410404013
- 负责人:
- 金额:--
- 依托单位:
- 依托单位国家:德国
- 项目类别:Research Fellowships
- 财政年份:2018
- 资助国家:德国
- 起止时间:2017-12-31 至 2018-12-31
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
The surrounding matter is build-up of protons and neutrons, the so-called nucleons. These particles are composed of three quarks, which are bound inside the nucleon by the strong interaction. The strong interaction is transmitted by gluons, which have the special feature that they are self-interacting particles. This leads to the fact that the quarks and gluons are bound inside the so-called hadrons and cannot be observed as free particles. This observation is called Confinement. There are two different types of hadrons known: the baryons, which consistent of three quarks, and the mesons, which are build-up of a quark-antiquark pair. Even the first publications hinted to the fact that there might be additional particles, for example penta-quarks containing four quarks and tetra-quarks which include five quarks. Particles containing gluonic contributions could also be possible, for example hybrid mesons with a quark-antiquark and a gluon, or even pure states of glue, the so-called glueballs.During the last years evidence was found by several experiment for penta- and tetra-quarks. However, all of these states contained charm quarks and had therefore higher masses (around 4 GeV). Regarding the lightest quarks, no proof for exotic states could be found so far, even though there are several candidates.To shed light on this question, the GlueX experiment was build-up in the last years at the CEBAF accelerator at Jefferson Lab, USA. The GlueX experiment has the special ability to measure neutral and charged decay particles with a high angular and energy resolution. This poses an ideal setup to hunt for exotic states by systematically map the meson spectrum and search for hybrid states.During this fellowship, I want to analyse final states consisting of two neutral mesons like two eta mesons. With these final states, the same quantum numbers, which have been predicted for the lowest laying glueball, become available for the intermediate states. Measurements with photoproduction have been conducted before, however, they were not able use photon beams of these high energies and achieve such a precision and statistics as it is possible for the GlueX experiment. Additionally, linearly polarized photons are used to excite the nucleons. This allows to apply different constraints to the data and gives further options to identify the quantum numbers of the intermediate states.Within the scope of this fellowship I want to get to know the experimental setup of the GlueX experiment and to understand their analysis software. This will allow me to conduct my own analysis and to exert my previous knowledge about the extraction of different final states and the observables. I plan to join the GlueX collaboration and to extensively contribute to their project in the next years. My work at the GlueX experiment will contribute to the search for exotic states containing light mesons and hopefully help to answer this question.
周围的物质是由质子和中子组成的,即所谓的核子。这些粒子由三个夸克组成,它们通过强相互作用束缚在核子内部。强相互作用是由胶子传递的,胶子具有自相互作用粒子的特殊性。这导致夸克和胶子被束缚在所谓的强子内部,不能作为自由粒子被观察到。这种观察被称为禁闭。已知有两种不同类型的强子:重子,由三个夸克组成;介子,由一对夸克-反夸克组成。即使是最早的出版物也暗示了可能存在其他粒子的事实,例如包含四个夸克的五夸克和包含五个夸克的四夸克。包含胶子贡献的粒子也是可能的,例如夸克-反夸克和胶子的混合介子,甚至是纯胶态,即所谓的胶球。在过去的几年里,几个实验发现了五夸克和四夸克的证据。然而,所有这些状态都包含了粲夸克,因此具有更高的质量(约4 GeV)。关于最轻的夸克,迄今为止还没有发现奇异态的证据,尽管有几个候选者。为了阐明这一问题,GST-X实验是在过去几年中在美国杰斐逊实验室的CEBAF加速器上建立的。GREX实验具有测量中性和带电衰变粒子的特殊能力,具有高角度和能量分辨率。这为我们通过系统地绘制介子谱和寻找混合态来寻找奇异态提供了一个理想的平台。在这个研究项目中,我想分析由两个中性介子组成的末态,比如两个η介子。有了这些最终状态,相同的量子数,这已经被预测为最低层胶球,成为可用于中间状态。之前已经进行了光生测量,但是,他们无法使用这些高能量的光子束,并实现GSTX实验可能达到的精度和统计数据。此外,线性偏振光子被用来激发核子。这允许对数据应用不同的约束,并给出进一步的选项来识别中间态的量子数。在这个奖学金的范围内,我想了解GSTX实验的实验设置,并了解他们的分析软件。这将使我能够进行自己的分析,并运用我以前关于提取不同最终状态和可观察量的知识。我计划在未来几年内加入GWAX合作,并为他们的项目做出广泛的贡献。我在GSTX实验中的工作将有助于寻找包含轻介子的奇异态,并希望有助于回答这个问题。
项目成果
期刊论文数量(1)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Professorin Dr. Annika Thiel其他文献
Professorin Dr. Annika Thiel的其他文献
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