Exploring Rapidity-Even Dipolar Flow in Isobaric Collisions at RHIC

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Hauptverfasser: Magdy, Niseem, Lacey, Roy
Format: Preprint
Veröffentlicht: 2023
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author Magdy, Niseem
Lacey, Roy
author_facet Magdy, Niseem
Lacey, Roy
contents Employing the AMPT transport model, we investigate the response of the rapidity-even dipolar flow ($\mathrm{v^{even}_{1}}$) and its associated Global Momentum Conservation (GMC) parameter $\mathrm{K}$ to structural disparities within $^{96}$Ru and $^{96}$Zr nuclei. We analyze $\rm Ru+Ru$ and $\rm Zr+Zr$ collisions at a center-of-mass energy of $\sqrt{\textit{s}_{NN}}$ = 200 GeV. Our analysis demonstrates that the eccentricity $\varepsilon_1$, $\mathrm{v^{even}_{1}}$ and $\mathrm{K}$ exhibit subtle yet discernible sensitivity to the input nuclear structure distinctions between $^{96}$Ru and $^{96}$Zr isobars. This observation suggests that measuring $v^{\rm even}_{1}$ and the GMC parameter in these isobaric collisions could serve as a means to fine-tune the comprehension of their nuclear structure disparities and offer insights to enhance the initial condition assumptions of theoretical models.
format Preprint
id arxiv_https___arxiv_org_abs_2308_11031
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Exploring Rapidity-Even Dipolar Flow in Isobaric Collisions at RHIC
Magdy, Niseem
Lacey, Roy
Nuclear Theory
Nuclear Experiment
Employing the AMPT transport model, we investigate the response of the rapidity-even dipolar flow ($\mathrm{v^{even}_{1}}$) and its associated Global Momentum Conservation (GMC) parameter $\mathrm{K}$ to structural disparities within $^{96}$Ru and $^{96}$Zr nuclei. We analyze $\rm Ru+Ru$ and $\rm Zr+Zr$ collisions at a center-of-mass energy of $\sqrt{\textit{s}_{NN}}$ = 200 GeV. Our analysis demonstrates that the eccentricity $\varepsilon_1$, $\mathrm{v^{even}_{1}}$ and $\mathrm{K}$ exhibit subtle yet discernible sensitivity to the input nuclear structure distinctions between $^{96}$Ru and $^{96}$Zr isobars. This observation suggests that measuring $v^{\rm even}_{1}$ and the GMC parameter in these isobaric collisions could serve as a means to fine-tune the comprehension of their nuclear structure disparities and offer insights to enhance the initial condition assumptions of theoretical models.
title Exploring Rapidity-Even Dipolar Flow in Isobaric Collisions at RHIC
topic Nuclear Theory
Nuclear Experiment
url https://arxiv.org/abs/2308.11031