English

On the Maximum Energy Release from Formation of Static Compact Objects

General Relativity and Quantum Cosmology 2023-11-29 v1 High Energy Astrophysical Phenomena

Abstract

Type II Supernova 1987A (SN 1987A), observed in 1987, released an energy of \mbox{Q3×1053Q \approx 3 \times 10^{53} erg}}. This huge energy is essentially the magnitude of gravitational potential or self-gravitational energy (PE) of a new born cold neutron star having a gravitational compactness or redshift zb0.15z_b \approx 0.15. One may wonder what could be the upper limit on the amount of energy that might be released with the formation of a cold Ultra Compact Object (UCO) with an arbitrary high zbz_b. Accordingly, here, for the first time, we obtain an analytical expression for the PE of a homogeneous general relativistic UCO assuming it to be cold and static. It is found that the PE of a homogeneous UCO of mass MM may exceed Mc2^2 and be as large as 1.34 Mc2^2. This result, though surprising, follows from an \textit{exact and correct} analytical calculation based on the standard General Theory of Relativity (GTR). Further, UCOs supported by tangential stresses may be inhomogeneous and much more massive than neutron stars with PE \sim 2.1 Mc2^2 Thus, in principle, formation of an UCO of a few solar masses (MM_\odot) might release an energy Q1055Q\sim10^{55} erg.

Cite

@article{arxiv.2311.14732,
  title  = {On the Maximum Energy Release from Formation of Static Compact Objects},
  author = {A. Mitra and K. K. Singh},
  journal= {arXiv preprint arXiv:2311.14732},
  year   = {2023}
}

Comments

8 Pages, 1 Figure, Galaxies 2023, 11, 116

R2 v1 2026-06-28T13:30:50.525Z