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- W4311700205 abstract "Abstract We study the thermal dilepton and photon production from relativistic heavy ion collisions in presence of viscosities by employing the recently developed second order dissipative hydrodynamic formulation estimated within a quasiparticle description of thermal quantum chromo-dynamics (QCD) medium. The sensitivity of shear and bulk viscous pressures to the temperature dependence of relaxation time is analyzed within one- dimensional boost invariant expansion of quark gluon plasma (QGP). The dissipative corrections to the phase-space distribution functions up to first order in gradients are obtained from the Chapman–Enskog like iterative solution of effective Boltzmann equation in the relaxation time approximation. Thermal dilepton and photon production rates for QGP are calculated by employing this viscous modified distribution function. Yields of these particles are quantified for the longitudinal expansion of QGP with different temperature dependent relaxation times. Our analysis employing this second order hydrodynamic model indicates that the spectra of dileptons and photons get enhanced by both bulk and shear viscosities and are well behaved. Also, these particle yields are found to be sensitive to relaxation time. Further, we do a comparison of these particle spectra with a standard hydrodynamic formulation." @default.
- W4311700205 created "2022-12-28" @default.
- W4311700205 creator A5036791533 @default.
- W4311700205 creator A5043851807 @default.
- W4311700205 date "2022-12-29" @default.
- W4311700205 modified "2023-09-26" @default.
- W4311700205 title "Second order hydrodynamics based on effective kinetic theory and electromagnetic signals from QGP" @default.
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- W4311700205 doi "https://doi.org/10.1088/1361-6471/aca924" @default.
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