<p>In the intermediate energy regime, unique synergy of nucleonic mean field and n–n collision plays a pivotal role in influencing the intricate dynamics of the nucleons. Therefore, the distinctive contribution of the nucleons participating in various degrees of anisotropic flow to generate the electromagnetic field have been explored by utilising the isospin-dependent quantum molecular dynamics (IQMD) framework in this energy regime. Additionally, two-particle cumulant method has been utilised to distinguish the nucleon participating in different flow harmonics. Herein, temporal and phase space evolutions of the electromagnetic field generated by the nucleons participating in different anisotropic flow gives better insight to understand the governance of various flow harmonics in the production of the electromagnetic field. This study also delves into the nuanced behaviour of nucleons engaging in different flow harmonics by correlating them with the slope of electromagnetic field generation with the incident energy.</p>

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Probing the contribution of nucleons participating with various flow harmonics in the production of electromagnetic field in mid-rapidity zone

  • Dhanpat Sharma,
  • Suneel Kumar

摘要

In the intermediate energy regime, unique synergy of nucleonic mean field and n–n collision plays a pivotal role in influencing the intricate dynamics of the nucleons. Therefore, the distinctive contribution of the nucleons participating in various degrees of anisotropic flow to generate the electromagnetic field have been explored by utilising the isospin-dependent quantum molecular dynamics (IQMD) framework in this energy regime. Additionally, two-particle cumulant method has been utilised to distinguish the nucleon participating in different flow harmonics. Herein, temporal and phase space evolutions of the electromagnetic field generated by the nucleons participating in different anisotropic flow gives better insight to understand the governance of various flow harmonics in the production of the electromagnetic field. This study also delves into the nuanced behaviour of nucleons engaging in different flow harmonics by correlating them with the slope of electromagnetic field generation with the incident energy.