We study the impact of the QCD critical point (CP) on the spin polarization of $\Lambda$-hyperon generated by the thermal vorticity in viscous quark gluon plasma (QGP). The equations of the relativistic causal viscous hydrodynamics have been solved numerically in (3+1) dimensions to evaluate the thermal vorticity. The effects of the CP have been incorporated through the equation of state (EoS) and the scaling behavior of the transport coefficients. A significant reduction in the global polarization has been found as the CP is approached. A drastic change induced by the CP in the rapidity dependence of the spin polarization is observed which can be used as a signature of the CP.Comment: Latex file, 15 figures including supplementary materia
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
We investigate the interaction of strong color fields in the glasma stage of high-energy nuclear col...
Thermal vorticity in non-central Au+Au collisions at energies 7.7 ≤ √s ≤ 62.4 GeV is calculated with...
We study the impact of the QCD critical point (CP) on the spin polarization of $$\Lambda $$-hyperon ...
We study the impact of the QCD critical point (CP) on the spin polarization of $$\Lambda $$-hyperon ...
With the Field Correlator Method (FCM) for QCD, we show that the Chiral Vortical Effect (CVE) in hot...
We briefly review the thermal model predictions related to longitudinal spin polarization of $\Lambd...
We investigate the hyperon polarization and its correlation with the directed flow of the quark-gluo...
We investigate the hyperon polarization and its correlation with the directed flow of the quark-gluo...
By including the recently introduced thermal shear term that contributes to the spin polarization ve...
We perform a systematic study on the local and global spin polarization of $\Lambda$ and $\overline{...
By including the recently introduced thermal shear term that contributes to the spin-polarization ve...
Heavy ion collisions generate strong fluid vorticty in the produced hot quark-gluon matter which cou...
The flow vorticity development is studied in the reaction plane of peripheral relativistic heavy-ion...
We study the important, yet widely overlooked, role of gluons for spin transport with a connection t...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
We investigate the interaction of strong color fields in the glasma stage of high-energy nuclear col...
Thermal vorticity in non-central Au+Au collisions at energies 7.7 ≤ √s ≤ 62.4 GeV is calculated with...
We study the impact of the QCD critical point (CP) on the spin polarization of $$\Lambda $$-hyperon ...
We study the impact of the QCD critical point (CP) on the spin polarization of $$\Lambda $$-hyperon ...
With the Field Correlator Method (FCM) for QCD, we show that the Chiral Vortical Effect (CVE) in hot...
We briefly review the thermal model predictions related to longitudinal spin polarization of $\Lambd...
We investigate the hyperon polarization and its correlation with the directed flow of the quark-gluo...
We investigate the hyperon polarization and its correlation with the directed flow of the quark-gluo...
By including the recently introduced thermal shear term that contributes to the spin polarization ve...
We perform a systematic study on the local and global spin polarization of $\Lambda$ and $\overline{...
By including the recently introduced thermal shear term that contributes to the spin-polarization ve...
Heavy ion collisions generate strong fluid vorticty in the produced hot quark-gluon matter which cou...
The flow vorticity development is studied in the reaction plane of peripheral relativistic heavy-ion...
We study the important, yet widely overlooked, role of gluons for spin transport with a connection t...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
We investigate the interaction of strong color fields in the glasma stage of high-energy nuclear col...
Thermal vorticity in non-central Au+Au collisions at energies 7.7 ≤ √s ≤ 62.4 GeV is calculated with...