论文标题

一个新的重型风味计划,用于未来的电子离子对撞机

A New Heavy Flavor Program for the Future Electron-Ion Collider

论文作者

Li, Xuan, Vitev, Ivan, Brooks, Melynda, Cincio, Lukasz, Durham, J. Matthew, Graesser, Michael, Liu, Ming X., Morreale, Astrid, Neill, Duff, da Silva, Cesar, Sondheim, Walter E., Yoon, Boram

论文摘要

拟议的高能量和高亮度电子离子对撞机(EIC)将提供最干净的环境之一,以精确确定宽阔的$ x $ x $ - $ q^{2} $范围的核部分分布功能(NPDFS)。 EIC的重型风味产生可在受限制的高比约克(Bjorken)$ x $区域中访问NPDF,使我们能够研究夸克和gluon碎片过程,并限制了冷核物质中的Parton能量损失。洛斯阿拉莫斯国家实验室的科学家正在开发一项新的物理计划,以研究核子/核心在未来EIC方向发展的核心/核中浓烈的风味的喷气机和强烈的风味强体喷射相关性。所提出的测量将提供一种独特的方式来探索依赖风味的碎片功能和重核中的能量损失。它们将限制对相对论重离子对撞机和大型强子对撞机的以前和正在进行的重离子测量至关重要的初始状态效应。我们展示了EIC的拟议前硅跟踪(FST)检测器的最初概念设计,这对于进行浓度的味道测量至关重要。我们进一步介绍了使用拟议的FST进行的最初的可行性研究/模拟强烈风味的哈生子重建。

The proposed high-energy and high-luminosity Electron-Ion Collider (EIC) will provide one of the cleanest environments to precisely determine the nuclear parton distribution functions (nPDFs) in a wide $x$-$Q^{2}$ range. Heavy flavor production at the EIC provides access to nPDFs in the poorly constrained high Bjorken-$x$ region, allows us to study the quark and gluon fragmentation processes, and constrains parton energy loss in cold nuclear matter. Scientists at the Los Alamos National Laboratory are developing a new physics program to study heavy flavor production, flavor tagged jets, and heavy flavor hadron-jet correlations in the nucleon/nucleus going direction at the future EIC. The proposed measurements will provide a unique way to explore the flavor dependent fragmentation functions and energy loss in a heavy nucleus. They will constrain the initial-state effects that are critical for the interpretation of previous and ongoing heavy ion measurements at the Relativistic Heavy Ion Collider and the Large Hadron Collider. We show an initial conceptual design of the proposed Forward Silicon Tracking (FST) detector at the EIC, which is essential to carry out the heavy flavor measurements. We further present initial feasibility studies/simulations of heavy flavor hadron reconstruction using the proposed FST.

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