Polarized Positron in Jefferson Lab Electron Ion Collider (JLEIC)

F. Lin, J. Grames, Jiquan Guo, V. Morozov, Yuhong Zhang
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引用次数: 2

Abstract

The Jefferson Lab Electron Ion Collider (JLEIC) is designed to provide collisions of electron and ion beams with high luminosity and high polarization to reach new frontier in exploration of nuclear structure. The luminosity, exceeding 1033 cm−2s−1 in a broad range of the center-of-mass (CM) energy and maximum luminosity above 1034 cm−2s−1, is achieved by high-rate collisions of short small-emittance low-charge bunches with proper cooling of the ion beam and synchrotron radiation damping of the electron beam. The polarization of light ion species (p, d, 3He) and electron can be easily preserved, manipulated and maintained by taking advantage of the unique figure-8 shape rings. With a growing physics interest, polarized positron-ion collisions are considered to be carried out in the JLEIC to offer an additional probe to study the substructure of nucleons and nuclei. However, the creation of polarized positrons with sufficient intensity is particularly challenging. We propose a dedicated scheme to generate ...
杰弗逊实验室电子离子对撞机(JLEIC)中的极化正电子
杰佛逊实验室电子离子对撞机(JLEIC)旨在提供高亮度和高极化的电子和离子束碰撞,以达到探索核结构的新前沿。在较宽的质心(cm)能量范围内,发光度超过1033 cm−2s−1,最大发光度超过1034 cm−2s−1,是通过对离子束进行适当的冷却和电子束的同步辐射阻尼来实现的。利用独特的8字形环,光离子(p, d, 3He)和电子的极化可以很容易地保存、操纵和维持。随着物理学兴趣的增长,人们认为在JLEIC中进行极化正离子碰撞,为研究核子和原子核的子结构提供了一个额外的探针。然而,创造具有足够强度的极化正电子尤其具有挑战性。我们提出了一个专门的方案来产生……
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