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- W2953584966 abstract "Because the traditional observable of charge-dependent azimuthal correlator $ensuremath{gamma}$ contains contributions from both the chiral magnetic effect (CME) and its background, a new observable of ${R}_{{mathrm{ensuremath{Psi}}}_{m}}$ was recently proposed which is expected to be able to distinguish the CME from the background. In this study, we apply two methods to calculate ${R}_{{mathrm{ensuremath{Psi}}}_{m}}$ using a multiphase transport model without or with introduction of a percentage of CME-induced charge separation. Our results show that the shape of final ${R}_{{mathrm{ensuremath{Psi}}}_{2}}$ distribution is flat for the case without the CME, but concave for that with an amount of the CME because the initial CME signal survives from strong final state interactions. By comparing the responses of ${R}_{{mathrm{ensuremath{Psi}}}_{2}}$ and $ensuremath{gamma}$ to the strength of the initial CME signal, we observe that both observables show nonlinear sensitivities to the CME because of the existence of strong final state interactions." @default.
- W2953584966 created "2019-07-12" @default.
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- W2953584966 date "2020-02-28" @default.
- W2953584966 modified "2023-10-17" @default.
- W2953584966 title "Sensitivity analysis for observables of the chiral magnetic effect using a multiphase transport model" @default.
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- W2953584966 doi "https://doi.org/10.1103/physrevc.101.024916" @default.
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