English

Normal and Quasinormal Modes of Holographic Multiquark Star

General Relativity and Quantum Cosmology 2023-02-08 v2 Solar and Stellar Astrophysics High Energy Physics - Phenomenology

Abstract

The quadrupole normal-mode oscillation frequency fnf_{n} of multiquark star are computed for n=15n=1-5. At the transition from low to high density multiquark in the core region, the first 2 modes jump to larger values, a distinctive signature of the presence of the high-density core. When the star oscillation couples with spacetime, gravitational waves~(GW) will be generated and the star will undergo damped oscillation. The quasinormal modes~(QNMs) of the oscillation are computed using two methods, direct scan and WKB, for QNMs with small and large imaginary parts respectively. The small imaginary QNMs have frequencies 1.52.61.5-2.6 kHz and damping times 0.191.70.19-1.7 secs for multiquark star with mass M=0.62.1MM=0.6-2.1 M_{\odot}~(solar mass). The WKB QNMs with large imaginary parts have frequencies 5.989.815.98-9.81 kHz and damping times 0.130.460.13-0.46 ms for M0.32.1MM\simeq 0.3-2.1 M_{\odot}. They are found to be the fluid ff-modes and spacetime curvature ww-modes respectively.

Keywords

Cite

@article{arxiv.2208.02761,
  title  = {Normal and Quasinormal Modes of Holographic Multiquark Star},
  author = {Supakchai Ponglertsakul and Piyabut Burikham and Sitthichai Pinkanjanarod},
  journal= {arXiv preprint arXiv:2208.02761},
  year   = {2023}
}

Comments

9 pages, 8 figures