5–9 Jul 2026
University of Canterbury
Pacific/Auckland timezone

From Black Holes to Stars: Rigidity Beyond Einstein Gravity

8 Jul 2026, 15:40
20m
Room E5 (Rātā / Engineering Core Building, University of Canterbury)

Room E5

Rātā / Engineering Core Building, University of Canterbury

63 Creyke Road, Ilam, Christchurch 8041, New Zealand
Parallel Session Talk Parallel sessions

Speaker

Nitesh Dubey (Indian Institute of Astrophysics, Bengaluru)

Description

The final equilibrium stage of stellar evolution may result in either a black hole or a compact object such as a white/black dwarf or neutron star. In general relativity, both stationary black holes and stationary stellar configurations are known to be axisymmetric, and black hole rigidity has been extended to several higher curvature modifications of gravity. In contrast, no comparable result had previously been established for stationary stars beyond general relativity. In this talk, I present our work where we extend the stellar axisymmetry theorem to a broad class of diffeomorphism invariant metric theories. Assuming asymptotic flatness and standard smoothness requirements, we show that the Killing symmetry implied by thermodynamic equilibrium inside the star uniquely extends to the exterior region, thereby enforcing rotational invariance. This demonstrates that axisymmetry of stationary stellar configurations is not a feature peculiar to Einstein gravity but a universal property of generally covariant gravitational theories, persisting even in the presence of higher curvature corrections.

Research Area Gravity: Geometric theory

Author

Nitesh Dubey (Indian Institute of Astrophysics, Bengaluru)

Presentation materials