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NRQCD Bottomonium at non-zero temperature using time-derivative moments

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arxiv 2502.03951 v2 pith:6TXYVHDN submitted 2025-02-06 hep-lat

classification hep-lat
keywords bottomoniummomentsresultstemperaturecorrelatorfunctionlatticemass
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

A well-known challenge for the lattice community is calculating the spectral function from the Euclidean correlator. We have approximated the spectral function and derived the mass and thermal width of particles through the time derivatives of the lattice correlator moments. We have focused on extracting the properties of bottomonium states, specifically $\Upsilon$ and $\chi_{b1}$. We will give an overview of the time-derivative moments approach and present results for the temperature dependence of the mass and width of both bottomonium states. The zero temperature results are consistent with experimental values, while results at higher temperatures are similar to those obtained using other methods.

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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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