Charmonium spectra at finite temperature from QCD sum rules with the maximum entropy method
arXiv:1104.4436 · doi:10.1103/PhysRevLett.107.092003
Abstract
Charmonia spectral functions at finite temperature are studied using QCD sum rules in combination with the maximum entropy method. This approach enables us to directly obtain the spectral function from the sum rules, without having to introduce any specific assumption about its functional form. As a result, it is found that while J/psi and eta_c manifest themselves as significant peaks in the spectral function below the deconfinement temperature T_c, they quickly dissolve into the continuum and almost completely disappear at temperatures between 1.0 T_c and 1.1 T_c.
4 pages, 1 figure; typos corrected, version published in Phys. Rev. Lett
References in corpus (4)
- Quarkonium correlators and spectral functions at zero and finite temperature
- Mass Shift and Width Broadening of J/psi in hot gluonic plasma from QCD Sum Rules
- Critical behavior of charmonia across the phase transition: A QCD sum rule approach
- In-medium modification of P-wave charmonia from QCD sum rules
Cited by in corpus (38)
- Complex Heavy-Quark Potential at Finite Temperature from Lattice QCD
- Charmonium properties in hot quenched lattice QCD
- Heavy Quarkonium in Extreme Conditions
- Quarkonia in the Quark Gluon Plasma
- Recent Progress in QCD Condensate Evaluations and Sum Rules
- Charmonium Spectroscopy in Strong Magnetic Fields by QCD Sum Rules: S-Wave Ground States
- D mesons in a magnetic field
- QCD sum rules for magnetically induced mixing between and
- Measurement of (1S+2S+3S) production in and AuAu collisions at GeV
- D meson mass increase by restoration of chiral symmetry in nuclear matter
- The Imaginary Part of the Static Potential in Strongly Coupled Anisotropic Plasma
- Time-dependent heavy-quark potential at finite temperature from gauge-gravity duality
- Thermal modification of bottomonium spectra from QCD sum rules with the maximum entropy method
- Parity projection of QCD sum rules for the nucleon
- An overview of experimental results from ultra-relativistic heavy-ion collisions at the CERN LHC: hard probes
- Free energy versus internal energy potential for heavy quark systems at finite temperature
- Heavy quarkonia in a bulk viscous medium
- A Bayesian analysis of the nucleon QCD sum rules
- Colour screening scenario for quarkonia suppression in a quasiparticle model compared with data obtained from experiments at the CERN SPS, BNL RHIC, and CERN LHC
- The , , and mesons in a double pole QCD Sum Rule
- Bayesian inference of real-time dynamics from lattice QCD
- Charmonium Spectral Functions and Transport Properties of Quark-Gluon Plasma
- Light vector correlator in medium: Wilson coefficients up to dimension 6 operators
- Stochastic pole expansion method
- Negative-parity nucleon excited state in nuclear matter
- QCD sum rules on the complex Borel plane
- Quasinormal modes and dispersion relations for quarkonium in a plasma
- Single-particle spectral density of the unitary Fermi gas: Novel approach based on the operator product expansion, sum rules and the maximum entropy method
- Renormalization of dimension 6 gluon operators
- Light scalar meson in vacuum and a hot medium
- Finite temperature sum rules in the vector channel at finite momentum
- Exact vector channel sum rules at finite temperature and their applications to lattice QCD data analysis
- Charmonium ground and excited states at finite temperature from complex Borel sum rules
- Temperature dependence of dimension 6 gluon operators and their effects on Charmonium
- A Unified View of Transport Equations
- near
- Modification of hadronic spectral functions under extreme conditions: An approach based on QCD sum rules and the maximum entropy method
- Confinement of Fermions in Tachyon Matter at Finite Temperature