Pith. sign in

REVIEW 1 cited by

A comparative study on maximum mass and radius of compact star from Heintzmann geometry and TOV approach

Not yet reviewed by Pith; the record is open.

This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.

SPECIMEN: schema-true, not a live event

T0 review · schema-true

One-sentence machine reading of the paper's core claim.

pith:XXXXXXXX · record.json · timestamp

arxiv 2309.11468 v1 pith:5VDZE2R7 submitted 2023-09-20 gr-qc

classification gr-qc
keywords modelalphacompactmassmaximumstaranisotropyheintzmann
verification ladder T0 review T1 audit T2 compute T3 formal
0 comments
abstract

In this article a class of anisotropic compact star is analysed in Heintzmann geometry. We have introduced the pressure anisotropy parameter ($\alpha$) and solved Einstein field equations to obtain stellar model. We have considered $g_{tt}$ component as proposed by Heintzmann and by solving Einstein field equation, the $g_{rr}$ component is evaluated in presence of pressure anisotropy. It is noted that for isotropic star ($\alpha=0$), the maximum mass lies within the range $1.87-3.04~ M_{\odot}$ for radii ranges between $8-13$ Km. For anisotropic compact stars maximum mass increases with $\alpha$ and lies within the range $1.99-3.23~ M_{\odot}$ for anisotropy parameter $\alpha=0.5$. The physical viability of the model is examined by applying our model to study the properties of few known compact objects. It is noted that all the stability conditions are fulfilled in the proposed model. It is interesting to note that maximum mass calculated from our model and from solving TOV equation are approximately same and also the predicted radius of few newly observed pulsars and companion star of GW events GW 190814 and GW 170817 from our model comply with the estimated value of radius from observation.

Discussion (0). Sign in to comment.

Forward citations

Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Probing Binary Neutron Star Merger Ejecta and Remnants with Gravitational Wave and Radio Observations

    astro-ph.HE 2025-06 conditional novelty 6.0 of 10

    A self-consistent forecast shows well-localized binary neutron star mergers with possible neutron star remnants will be detectable in radio at rates from a few per year now to hundreds per year with next-generation detectors.

Pith tools