Yayınlanmış 1 Ocak 2021 | Sürüm v1
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Properties of spin-$1/2$ heavy baryons at nonzero temperature

  • 1. Özyeǧin University, Department of Natural and Mathematical Sciences, Çekmeköy, 34794 Istanbul, Turkey
  • 2. National Defense University, Army NCO Vocational HE School, Department of Basic Sciences, Altıeylül, 10185 Balıkesir, Turkey
  • 3. University of Tehran, Department of Physics, North Karegar Avenue, Tehran 14395-547, Iran

Açıklama

The spectroscopic properties of single heavy spin-$1/2\text{}\text{}{\Lambda }_{Q}$, ${\Sigma }_{Q}$, ${\Xi }_{Q}^{\left(\prime \right)}$, and ${\Omega }_{Q}$ baryons are investigated at finite temperature in the framework of the thermal QCD sum rule. We discuss the behavior of the mass and residue of these baryons with respect to temperature, taking into account contributions of nonperturbative operators up to dimension eight. We include additional operators coming from the Wilson expansion due to breaking the Lorentz invariance at nonzero temperature. The obtained results show that the mass of these baryons remain stable up to roughly $T=108\text{}\text{}\mathrm{MeV}$ while their residue is unchanged up to $T=93\text{}\text{}\mathrm{MeV}$. After these points, the mass and residue start to diminish by increasing the temperature. The shifts in the mass and residue for both the bottom and charm channels are considerably large and we observe the melting of these baryons near to the pseudocritical temperature determined by recent lattice QCD calculations. We present our results for the mass of these baryons with both the positive and negative parity at the $T\to 0$ limit, which are consistent with the existing theoretical predictions as well as experimental data.

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PhysRevD.104.094029.pdf

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