Leading order gravitational backreactions in de Sitter spacetime

B Losic, WG Unruh - Physical Review D—Particles, Fields, Gravitation, and …, 2006 - APS
Backreactions are considered in a de Sitter spacetime whose cosmological constant is
generated by the potential of a scalar field. The leading order gravitational effect of nonlinear …

On leading order gravitational backreactions in de Sitter spacetime

B Losic, WG Unruh - Phys. Rev. D, 2006 - inspirehep.net
Backreactions are considered in a de Sitter spacetime whose cosmological constant is
generated by the potential of scalar field. The leading order gravitational effect of nonlinear …

On leading order gravitational backreactions in de Sitter spacetime

B Losic, WG Unruh - arXiv preprint gr-qc/0604122, 2006 - arxiv.org
Backreactions are considered in a de Sitter spacetime whose cosmological constant is
generated by the potential of scalar field. The leading order gravitational effect of nonlinear …

[PDF][PDF] On leading order gravitational backreactions in de Sitter spacetime

B Losic, WG Unruh - arXiv preprint gr-qc/0604122, 2006 - core.ac.uk
Backreactions are considered in a de Sitter spacetime whose cosmological constant is
generated by the potential of scalar field. The leading order gravitational effect of nonlinear …

[PDF][PDF] On leading order gravitational backreactions in de Sitter spacetime

B Losic, WG Unruh - arXiv preprint gr-qc/0604122, 2006 - scholar.archive.org
Backreactions are considered in a de Sitter spacetime whose cosmological constant is
generated by the potential of scalar field. The leading order gravitational effect of nonlinear …

Leading order gravitational backreactions in de Sitter spacetime

B Losic, WG Unruh - Physical Review D, 2006 - ui.adsabs.harvard.edu
Backreactions are considered in a de Sitter spacetime whose cosmological constant is
generated by the potential of a scalar field. The leading order gravitational effect of nonlinear …

[引用][C] Leading order gravitational backreactions in de Sitter spacetime

B LOSIC, WG UNRUH - Physical review. D. Particles and …, 2006 - American Physical Society