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Title: Complications in the interpretation of the charge-asymmetry-dependent π flow for the chiral magnetic wave

Journal Article · · Physical Review C
ORCiD logo [1];  [2]; ORCiD logo [2];  [3]
  1. Huzhou University (China); Purdue Univ., West Lafayette, IN (United States); OSTI
  2. Purdue Univ., West Lafayette, IN (United States)
  3. Huzhou University (China); Purdue Univ., West Lafayette, IN (United States)

The charge asymmetry ($$A_ch$$) dependence of the $π^₋$ and $π^+$ elliptic flow difference, $$Δv_2(A_{\text{ch}})$$, has been regarded as a sensitive observable for the possible chiral magnetic wave (CMW) in relativistic heavy ion collisions. In this work, we first demonstrate that, due to nonflow backgrounds, the flow measurements by the Q-cumulant method using all charged particles as reference introduce a trivial linear term to $$Δv_2(A_{\text{ch}})$$. The trivial contribution to the slope of triangle flow difference $$Δv_3( A_{\text{ch}})$$ can be negative if the nonflow is dominated by back-to-back pairs. After eliminating the trivial term, we find that the nonflow between like-sign pairs gives rise to an additional positive slope to $$Δv_2(A_{\text{ch}})$$ because of the larger multiplicity dilution to $π^+$ ($π^₋$) at positive (negative) $$A_{\text{ch}}$$. We further find that the competition between different π sources can introduce another nontrivial linear-$$A_{\text{ch}}$$ term due to their different multiplicity fluctuations and anisotropic flows. We then study the effect of neutral cluster (resonance) decays as a mechanism for local charge conservation on the slope parameter of $$Δv_2(A_{\text{ch}})$$. We find that the slope parameter is sensitive to the kinematics of those neutral clusters. Light resonances give positive slopes while heavy resonances give negative slopes. Local charge conservation from continuum cluster mass distribution can give a positive slope parameter comparable to experimental data. Our studies indicate that many non-CMW physics mechanisms can give rise to a $$A_{\text{ch}}$$-dependent $$Δv_2(A_{\text{ch}})$$ and the interpretation of $$Δv_2(A_{\text{ch}})$$ in terms of the CMW is delicate.

Research Organization:
Purdue Univ., West Lafayette, IN (United States)
Sponsoring Organization:
China Scholarship Council (CSC); National Natural Science Foundation of China (NSFC); USDOE Office of Science (SC)
Grant/Contract Number:
SC0012910
OSTI ID:
1802476
Journal Information:
Physical Review C, Journal Name: Physical Review C Journal Issue: 1 Vol. 101; ISSN 2469-9985
Publisher:
American Physical Society (APS)Copyright Statement
Country of Publication:
United States
Language:
English

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