23–28 Aug 2026
Asia/Shanghai timezone

Neutron stars more compact than black holes as a probe of strong-field gravity

24 Aug 2026, 16:15
15m
S102, UCAS Teaching Building

S102, UCAS Teaching Building

Speaker

Shoulong Li (Hunan Normal University)

Description

Probing gravity in its strongest regime is a central goal of modern physics, as the nature of the most compact objects reflects fundamental aspects of Einstein’s theory of general relativity (GR). In GR, black holes are regarded as the most compact objects in the Universe. Here, for the first time, we demonstrate that stable stellar configurations more compact than black holes can arise when neutron-star equations of state are embedded in quasitopological gravity, a class of higher-curvature extensions of GR. We construct such ultracompact stars, analyze their macroscopic properties, and establish their stability against radial perturbations, confirming their physical plausibility. We further identify potential observational signatures to distinguish these stars from black holes, most notably gravitational-wave echoes whose detectability could provide direct evidence of physics beyond Einstein’s GR in the strong-field regime.

Author

Shoulong Li (Hunan Normal University)

Presentation materials