摘要: The initial collision geometry, including the reaction plane, is crucial for interpreting collective phenomena in relativistic heavy-ion collisions, yet it remains experimentally inaccessible through conventional measurements. Recent studies propose utilizing photon-induced processes as a direct probe, leveraging the complete linear polarization of emitted photons whose orientation strongly correlates with the collision geometry. In this work, we employ a QED-based approach to systematically investigate dilepton production via two-photon processes in heavy-ion collisions at RHIC and LHC energies and detector acceptances. Our calculations reveal that dilepton emission exhibits significant sensitivity to the initial collision geometry through both the azimuthal angles of their emission (defined by the relative momentum vector of the two leptons) and the overall momentum orientation of the dilepton pairs. These findings highlight the potential of two-photon-generated dileptons as a novel, polarization-driven probe to quantify the initial collision geometry and reduce uncertainties in characterizing quark-gluon plasma properties.
-
来自:
Luo, Mr. Jiaxuan
-
分类:
物理学
>>
核物理学
-
备注:
已向《Nuclear Science and Techniques》投稿
-
引用:
ChinaXiv:202508.00023
(或此版本
ChinaXiv:202508.00023V1)
DOI:10.12074/202508.00023
CSTR:32003.36.ChinaXiv.202508.00023
-
科创链TXID:
19cb5f88-b38e-4c36-a6e2-46b36ce0b3dc
- 推荐引用方式:
Luo, Mr. Jiaxuan,Li, Mr. Xinbai,Tang, Dr. Zebo,Wu, Mr. Xin,Yang, Prof. Shuai,Zha, Dr. Wangmei,Zhang, Mr. Zhan.Probing the Collision Geometry via Two-Photon Processes in Heavy-Ion Collisions.中国科学院科技论文预发布平台.[DOI:10.12074/202508.00023]
(点此复制)