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Heavy Quarkonia Spectroscopy At Zero And Finite Temperature In Bottom-Up Ads/Qcd
Date Issued
2021-04-13
Author(s)
WoS ID
WOS:000649079900010
Abstract
S-wave states of charmonium and bottomonium are described using bottom-up AdS/QCD. We propose a holographic model that unifies the description of masses and decay constants, leading to a precise match with experimental data on heavy quarkonia. Finite temperature effects are considered by calculating the current-current spectral functions of heavy vector mesons. The identification of quasiparticle states as Breit-Wigner resonances in the holographic spectral function was made. We develop a prescription to subtract background contributions from the spectral function to isolate the Breit-Wigner peak. The quasi-particle holographic thermal evolution is described, allowing us to estimate the melting temperature for vector charmonia and bottomonia. Our holographic model predicts that 𝐽/Ψ melts at 415 MeV ( ∼2.92𝑇𝑐) and ϒ melts at 465 MeV ( ∼3.27𝑇𝑐).
OCDE Subjects
Quartile (Date Issued)
Q1
License
acceso abierto
Open Science Path