Overview of PHENIX Physics at Forward and Backward Rapidity

R. Seto
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Abstract

Physics at forward and backward rapidity in hadron+hadron and nucleus+nucleus collisions give access to kinematic regions that give unique information about nuclear effects from cold nuclear matter, crucial in understanding signals from the final state, such as the Quark Gluon Plasma. This proceedings will focus on three areas of interest. The first will describe a measurement of J/$\psi$ suppression in U+U collisions (measured by PHENIX in the forward and backward regions) where signs of regeneration from $c\overline{c}$ coalescence are seen. The second will include a measurement and discussion of the effects causing suppression of the $\psi$(2s) to $\psi$(1s) in cold nuclear matter. Lastly, I will provide an analysis update data taken with a recently added detector to the PHENIX experiment, the MPC-EX that has as its purpose, the measurement of $π^0$s and direct photons in cold nuclear matter at low-x.
在前进和后退速度的PHENIX物理概述
在强子+强子和核+核碰撞中,向前和向后的物理速度使我们能够获得关于冷核物质核效应的独特信息的运动学区域,这对于理解来自最终状态的信号至关重要,例如夸克胶子等离子体。本次会议将集中讨论三个领域。第一篇将描述在U+U碰撞中J/ $\psi$抑制的测量(由PHENIX在正向和反向区域测量),在那里可以看到$c\overline{c}$聚结再生的迹象。第二部分将包括测量和讨论在冷核物质中引起$\psi$ (2s)到$\psi$ (1s)抑制的效应。最后,我将提供最近添加到PHENIX实验的探测器的分析更新数据,MPC-EX作为其目的,测量$π^0$ s和低x冷核物质中的直接光子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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