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1.
Proc Math Phys Eng Sci ; 475(2225): 20180858, 2019 May.
Artigo em Inglês | MEDLINE | ID: mdl-31236048

RESUMO

We study the free boundary problem for the 'hard phase' material introduced by Christodoulou in (Christodoulou 1995 Arch. Ration. Mech. Anal. 130, 343-400), both for rods in (1 + 1)-dimensional Minkowski space-time and for spherically symmetric balls in (3 + 1)-dimensional Minkowski space-time. Unlike Christodoulou, we do not consider a 'soft phase', and so we regard this material as an elastic medium, capable of both compression and stretching. We prove that shocks must be null hypersurfaces, and derive the conditions to be satisfied at a free boundary. We solve the equations of motion of the rods explicitly, and we prove existence of solutions to the equations of motion of the spherically symmetric balls for an arbitrarily long (but finite) time, given initial conditions sufficiently close to those for the relaxed ball at rest. In both cases we find that the solutions contain shocks if and only if the pressure or its time derivative do not vanish at the free boundary initially. These shocks interact with the free boundary, causing it to lose regularity.

2.
Phys Rev Lett ; 120(3): 031103, 2018 Jan 19.
Artigo em Inglês | MEDLINE | ID: mdl-29400502

RESUMO

The fate of Cauchy horizons, such as those found inside charged black holes, is intrinsically connected to the decay of small perturbations exterior to the event horizon. As such, the validity of the strong cosmic censorship (SCC) conjecture is tied to how effectively the exterior damps fluctuations. Here, we study massless scalar fields in the exterior of Reissner-Nordström-de Sitter black holes. Their decay rates are governed by quasinormal modes of the black hole. We identify three families of modes in these spacetimes: one directly linked to the photon sphere, well described by standard WKB-type tools; another family whose existence and time scale is closely related to the de Sitter horizon; finally, a third family which dominates for near-extremally charged black holes and which is also present in asymptotically flat spacetimes. The last two families of modes seem to have gone unnoticed in the literature. We give a detailed description of linear scalar perturbations of such black holes, and conjecture that SCC is violated in the near extremal regime.

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