论文标题
在EIC探测用重建和标记的重型味道子对的Gluon TMD
Probing gluon TMDs with reconstructed and tagged heavy flavor hadron pairs at EIC
论文作者
论文摘要
质子横向结构的研究是即将到来的电子离子对撞机(EIC)的主要物理目标之一。 Gluon横向动量依赖分布(TMD)构成了这项工作的重要重点,对于了解角动量对质子自旋的贡献以及QCD分解非常重要。但是,目前存在对Gluon TMD的实验限制非常有限。由于Lepton-Nucleon Dis中的重型夸克产生从光子 - 网状融合过程中获得了主要的贡献,因此,重夸克的产生使探测核子中的Gluon分布的工具具有吸引力。在本文中,我们介绍了一项对未来EIC检测器的重型强子对重建的研究,该探测器具有基于地图的内部跟踪和引导子系统,以限制Gluon TMD。我们利用探测器提供的出色的轨道指向分辨率,通过其HADRONIC衰减通道专门重建了重型风味强子对,并开发出浓的风味强子标记算法。评估了对应于EIC处Gluon TMD的方位角不对称的统计不确定性投影。与独家重建相比,发现重型风味标签可大大提高重型强子选择的纯度,并提高了测量的统计精度。还研究并发现相关的相关性良好相关性,启动该过程的Gluon横向动量的方位角与相应的浓味强体对的相关性之间的相关性。这项研究开辟了强烈的味道生成对测量值,作为在EIC访问Gluon TMD的有吸引力的通道。
Study of the transverse structure of the proton is one of the major physics goals of the upcoming Electron Ion Collider (EIC). The gluon transverse momentum dependent distributions (TMD) form an essential focus of this effort and are important towards understanding the angular momentum contribution to proton spin as well as QCD factorization. However, very limited experimental constraints on the gluon TMD exist currently. As the heavy quark production in lepton-nucleon DIS gets a dominant contribution from the photon-gluon-fusion process, heavy quark production makes an attractive tool to probe gluon distributions in nucleons. In this paper we present a study of heavy flavor hadron pair reconstruction at a future EIC detector with MAPS based inner tracking and vertexing subsystems to constrain gluon TMD. We utilize the excellent track pointing resolution provided by the detector to exclusively reconstruct heavy flavor hadron pairs via their hadronic decay channels and also to develop a heavy flavor hadron tagging algorithm. Statistical uncertainty projections on azimuthal asymmetries corresponding to gluon TMD at the EIC is evaluated. The heavy flavor tagging is found to substantially enhance the purity of heavy flavor hadron pair selection, and the statistical precision of the measurement compared to that from exclusive reconstruction. The correlation between the azimuthal angle of the transverse momentum of the gluon initiating the process and that of the corresponding heavy flavor hadron pair was also studied and found to be well correlated. This study opens up heavy flavor hadron pair measurements as an attractive channel to access gluon TMD at the EIC.