4.7 Article

Instabilities of wormholes and regular black holes supported by a phantom scalar field

期刊

PHYSICAL REVIEW D
卷 86, 期 2, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.86.024028

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资金

  1. RFBR [09-02-00677a]
  2. NPK MU Grant at PFUR
  3. FTsP Nauchnye i nauchno-pedagogicheskie kadry innovatsionnoy Rossii
  4. Conicyt [ACT-91]
  5. Chilean Government through the Centers of Excellence Base Financing Program of Conicyt
  6. European Commission
  7. Deutscher Academischer Austausch Dienst (DAAD)
  8. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico (CNPq)

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We test the stability of various wormholes and black holes supported by a scalar field with a negative kinetic term. The general axial perturbations and the monopole type of polar perturbations are considered in the linear approximation. Two classes of objects are considered: (i) wormholes with flat asymptotic behavior at one end and anti-de Sitter on the other (Minkowski-anti-de Sitter wormholes) and (ii) regular black holes with asymptotically de Sitter expansion far beyond the horizon (the so-called black universes). A difficulty in such stability studies is that the effective potential for perturbations forms an infinite wall at throats, if any. Its regularization is in general possible only by numerical methods, and such a method is suggested in a general form and used in the present paper. As a result, we have shown that all configurations under study are unstable under spherically symmetric perturbations, except for a special class of black universes where the event horizon coincides with the minimum of the area function. For this stable family, the frequencies of quasinormal modes of axial perturbations are calculated.

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