Abstract Details

Name: Anil Kumar
Affiliation: PhD student
Conference ID : ASI2024_473
Title : Hybrid star are compatible with recent astrophysical observations
Authors : Anil Kumar, Vivek Baruah Thapa, Monika Sinha
Authors Affiliation: Anil Kumar PhD Student (Indian Institute of Technology, Jodhpur- 342030, India) Vivek Baruah Thapa Asst. Professor (Bhawanipur Anchalik College, Barpeta, Assam-781352, India) Monika Sinha- Asst. Professor (Indian Institute of Technology, Jodhpur- 342030, India)
Mode of Presentation: Poster
Abstract Category : High Energy Phenomena, Fundamental Physics and Astronomy
Abstract : Compact stars (CS) are stellar remnants of massive stars. Inside CSs the density is so high that matter is in subatomic form composed of nucleons. With the increase in density of matter towards the center of the objects other degrees of freedom like hyperons, heavier non-strange baryons, and meson condensates may appear. Not only that at higher densities, the nucleons may get decomposed into quarks and form deconfined strange quark matter (SQM). If it is so then CSs may contain SQM in the core surrounded by nucleonic matter forming hybrid stars (HSs). However, the nature and composition of matter inside CSs can only be inferred from the astrophysical observations of these CSs. Recent astrophysical observations in terms of CS mass-radius (M-R) relation and gravitational wave (GW) observation indicate that the matter should be soft in the intermediate density range and stiff enough at the higher density range to attain the maximum possible mass above 2 solar mass which is not compatible with the pure hadronic equation of states (EOSs). Consequently, we study the HS properties with different models of SQM and find that within the vector bag model considering density-dependent bag parameter, the model goes well with the astrophysical observations so far.