PaperPanorama

Nuclear Theory·nucl-th

Monday·March 15, 2021

6 papers4 primary·2 cross-listed

  1. 05

    [Submitted on 11 Mar 2021] (cross-list from hep-ph)

    Signatures of Moat Regimes in Heavy-Ion Collisions

    Robert D. Pisarski🇺🇸 · Fabian Rennecke🇺🇸

    Heavy-ion collisions at small beam energies have the potential to reveal the rich phase structure of QCD at nonzero temperature and density. Among the possible phases are regimes which feature periodic modulations of the spatial structure, where the energy spectrum is shaped like a moat, with the minimum of the energy over a sphere at nonzero momentum. We argue that if the matter created in heavy-ion collisions traverses such a regime, it can produce a characteristic momentum dependence of particle number and their correlations. As an explicit example, we consider a quantum pion liquid phase to compute these quantities on the freeze-out surface. These results can serve as a first guideline for a systematic search of spatially modulated phases in heavy-ion collisions.

    Comments:
    5 pages, 3 figures; matches the published version. v3: corrected acknowledgements for RDP
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2103.06890 [pdf]
    PRL(2021)·69 citations
  2. 06

    [Submitted on 12 Mar 2021] (cross-list from hep-ph)

    Cold quark matter at N3LO: soft contributions

    Tyler Gorda🇩🇪 · Aleksi Kurkela🇳🇴 · Risto Paatelainen🇫🇮 · Saga Säppi🇮🇹 · Aleksi Vuorinen🇫🇮

    High-order perturbative calculations for thermodynamic quantities in QCD are complicated by the physics of dynamical screening that affects the soft, long-wavelength modes of the system. Here, we provide details for the evaluation of this soft contribution to the next-to-next-to-next-to-leading order (N3LO) pressure of high-density, zero-temperature quark matter (QM), complementing our accompanying paper in arXiv:2103.05658. Our calculation requires the determination of the pressure of the hard-thermal-loop (HTL) effective theory to full two-loop order at zero temperature, which we go through in considerable detail. In addition to this, we comprehensively discuss the structure of the weak-coupling expansion of the QM pressure, and lay out a roadmap towards the evaluation of the contributions missing from a full N3LO result for this quantity.

    Comments:
    49 pages + 30 pages appendices = 79 pages total, 7 figures, 4 tables; Long companion paper for arXiv:2103.05658. Changes from v1: further discussions, references, and clarifications added; some equations moved to appendices. Version published in PRD
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2103.07427 [pdf]
    PRD(2021)·103 citations

Affiliations

first authorsco-authorsvia INSPIRE