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Open charm mesons at nonzero temperature: results in the hadronic phase from lattice QCD

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arxiv 2209.14681 v1 pith:M5YWYBEK submitted 2022-09-29 hep-lat nucl-th

classification hep-latnucl-th
keywords temperaturehadronicphasechannelseffectsgroundstatelatticemass
verification ladder T0 review T1 audit T2 compute T3 formal
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We study what happens to D and D_s mesons as the temperature increases, using lattice QCD simulations with N_f=2+1 dynamical flavours on anistropic lattices. We have access to five temperatures in the hadronic phase. Using the determined groundstate mass at the lowest temperature, we investigate the effect of rising temperature by analysing ratios of mesonic correlators, without the need for further fitting or spectral reconstruction. In the pseudoscalar and vector channels, we demonstrate that temperature effects are at the percent level and can be captured by a reduction of the groundstate mass as the thermal crossover is approached. In the axial-vector and scalar channels on the other hand, temperature effects are prominent throughout the hadronic phase.

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  1. Finite temperature hadronic spectral properties

    hep-lat 2025-05 conditional novelty 5.0 of 10

    Doubly charmed baryons stay stable and the bottomonium ground state loses 30 to 40 MeV as quark-gluon plasma temperature rises, according to new lattice QCD ensembles.

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