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Formation and decay of hadronic resonances in the QGP

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arxiv 0807.1509 v2 pith:3EQW4JPP submitted 2008-07-09 nucl-th

Formation and decay of hadronic resonances in the QGP

classification nucl-th
keywords phaseresonanceschiralhadronicmodificationsdecaydeltaformation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Hadronic resonances can play a pivotal role in providing experimental evidence for partial chiral symmetry restoration in the deconfined quark-gluon phase produced at RHIC. Their lifetimes, which are comparable to the lifetime of the partonic plasma phase, make them an invaluable tool to study medium modifications to the resonant state due to the chiral transition. In this paper we show that the heavier, but still abundant, light and strange quark resonances K*, phi, Delta and Lambda* have large probability to be produced well within the plasma phase due to their short formation times. We demonstrate that, under particular kinematic conditions, these resonances can be formed and will decay inside the partonic state, but still carry sufficient momentum to not interact strongly with the hadronic medium after the QCD phase transition. Thus, K*, phi, Delta and Lambda* should exhibit the characteristic property modifications which can be attributed to chiral symmetry restoration, such as mass shifts, width broadening or branching ratio modifications.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Observation of the centrality-dependent difference in directed flow between charged kaons and $K^{*0}$ resonances in Au+Au collisions at $\sqrt{s_{\mathrm{NN}}}$ = 14.6, 19.6 and 27 GeV

    nucl-ex 2026-07 accept novelty 7.0

    First measurement of K*0 directed flow shows a centrality-dependent difference from charged kaons that hydro+UrQMD models attribute to asymmetric hadronic rescattering relative to the event plane.

  2. Probing Late-Stage Hadronic Interactions at High Baryon Density via $K^{*0}$ Production in the RHIC Beam Energy Scan Program

    nucl-ex 2026-01 accept novelty 7.0

    K*0/K yield ratios in central Au+Au collisions at BES energies are suppressed relative to peripheral collisions and thermal predictions, indicating hadronic rescattering that strengthens at lower energies.