Exploration of Zero-Complexity Compact Stars in Higher Dimensions under the Finch-Skea Background
Shyam Das, Megandhren Govender, Kevin Reddy, Bikram Keshari Parida
Abstract
Motivated by the recent extension of Herrera's gravitational complexity to arbitrary higher-dimensional spacetimes, we investigate exact compact-star models that satisfy the vanishing-complexity condition within the Finch--Skea geometry in (n+2)-dimensional Einstein gravity. By combining the higher-dimensional Einstein field equations with the generalized complexity formalism, we obtain a new class of exact interior solutions describing anisotropic fluid spheres with zero complexity. The physical properties of these models are evaluated by analyzing the behavior of the matter variables, pressure anisotropy, and equilibrium conditions, alongside the standard requirements of regularity, energy conditions, causality, and stability. We further explore the influence of spacetime dimensionality on the structural characteristics of the stellar configurations, demonstrating that the presence of extra dimensions significantly modifies the internal matter distribution while preserving physical viability. The solutions presented here represent the first exact higher-dimensional Finch--Skea compact-star models constructed within this recently developed generalized complexity framework choudas. These results provide a natural extension of zero-complexity stellar configurations beyond four-dimensional General Relativity and offer a robust framework for investigating self-gravitating systems in higher- dimensional gravity.
Create a lesson
Related papers
Charged black-hole binary radiation at second post-Newtonian order
Andrea Placidi, Elisa Grilli, Matteo Pegorin et al.
Ultralight Bosons Explain the Mass-Spin Correlations in the Merging Binary Black Hole Population
Xiao-Xiao Kou, Vuk Mandic, Ran Ding et al.
Thermal Quantum Fluctuations in Einstein-Nonlinear Maxwell-Yukawa Black Hole
M. Mangut
Relativistic stellar collapse of initially static configurations
Keshlan S. Govinder, Megandhren Govender, Sunil Maharaj
Frequency-domain extended-effective-source gravitational self-force for eccentric Schwarzschild orbits
Xuchen Lu, Yungui Gong, Bokai Zhang et al.
Covariant linear response theory for a photon gas in curved spacetime
Jianan Wang, Long Cui, Bin Wu