Article, 2024

Ultracompact horizonless objects in order-reduced semiclassical gravity

Physical Review D, ISSN 2470-0010, Volume 109, 10, 10.1103/PhysRevD.109.104056

Contributors

Arrechea J. 0000-0001-6853-7742 [1] [2] [3] Barcelo C. 0000-0002-2134-377X [4] Carballo-Rubio R. 0000-0001-6389-6105 [5] Garay L.J. 0000-0002-3943-7782 [6]

Affiliations

  1. [1] Dipartimento di Fisica
  2. [NORA names: Italy; Europe, EU; OECD];
  3. [2] International School for Advanced Studies (SISSA)
  4. [NORA names: Italy; Europe, EU; OECD];
  5. [3] Sezione di Trieste
  6. [NORA names: Italy; Europe, EU; OECD];
  7. [4] Instituto de Astrofísica de Andalucía (IAA-CSIC)
  8. [NORA names: Spain; Europe, EU; OECD];
  9. [5] University of Southern Denmark
  10. [NORA names: SDU University of Southern Denmark; University; Denmark; Europe, EU; Nordic; OECD];

Abstract

The backreaction of quantum fields in their vacuum state results in equilibrium structures that surpass the Buchdahl compactness limit. Such backreaction is encapsulated in the vacuum expectation value of the renormalized stress-energy tensor (RSET). In previous works we presented analytic approximations to the RSET, obtained by dimensional reduction, available in spherical symmetry, and showed that the backreaction-generated solutions described ultracompact fluid spheres with a negative mass interior. Here, we derive a novel approximation to the RSET that does not rely on dimensional reduction, but rather on a reduction of the differential order. This approximation also leads to regular stars surpassing the Buchdahl limit. We conclude that this is a consequence of the negative energies associated with the Boulware vacuum which, for sufficiently compact fluid spheres, makes the Misner-Sharp mass negative near the center of spherical symmetry. Our analysis provides further cumulative evidence that quantum vacuum polarization is capable of producing new forms of stellar equilibrium with robust properties across different analytical approximations to the RSET.

Funders

  • Ministry of Higher Education and Scientific Research
  • Villum Fonden
  • Spanish Government
  • Junta de Andalucía
  • Severo Ochoa
  • Ministero dell’Istruzione, dell’Università e della Ricerca

Data Provider: Elsevier