7 papers
Vorticity-induced modifications of chemical freeze-out in heavy-ion collisions
Nandita Padhan, Kshitish Kumar Pradhan, Arghya Chatterjee +1
We investigate the influence of global rotation on the chemical freeze-out parameters in ultra-relativistic heavy-ion collisions. Within the framework of the hadron resonance gas (…
Magneto-Thomson and transverse Thomson effects in an interacting hadron gas in the presence of an external magnetic field
Kamaljeet Singh, Kshitish Kumar Pradhan, Raghunath Sahoo
The universality of electric charge as a quantum number allows thermoelectric properties to manifest across diverse systems, starting from a hot quantum chromodynamic matter in hea…
Partial pressure and susceptibilities of charmed sector in the van der Waals hadron resonance gas model
Kangkan Goswami, Kshitish Kumar Pradhan, Dushmanta Sahu +1
We investigate the general susceptibilities in the charm sector by using the van der Waals hadron resonance gas model (VDWHRG). We argue that the ideal hadron resonance gas (HRG),…
Emergent spin polarization from meson condensation in rotating hadronic matter
Kshitish Kumar Pradhan, Dushmanta Sahu, Raghunath Sahoo
The behavior of vector mesons in extreme environments provides a unique probe of non-perturbative Quantum Chromodynamics. We investigate the conditions for Bose-Einstein condensati…
Mean free path of photons in relativistic heavy ion collisions
Jajati K. Nayak, Rupa Chatterjee
Electromagnetic probes, such as photons and dileptons, play a key role in diagnosing the initial temperature of the hot and dense quark-gluon plasma (QGP) matter created in relativ…
Rotational susceptibility of a hot and dense hadronic matter
Bhagyarathi Sahoo, Kshitish Kumar Pradhan, Dushmanta Sahu +1
We study the effect of global rotation on rotational susceptibilities (, , etc.), which quantify how much the system responds to small angular veloc…