Ghosts in a mirror

Apr, 2003
5 pages
Published in:
  • Mod.Phys.Lett.A 19 (2004) 457-466
e-Print:

Citations per year

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Abstract:
We look at some dynamic geometries produced by scalar fields with both the right and the wrong sign of the kinetic energy. We start with anisotropic homogeneous universes with closed, open and flat spatial sections. A non-singular solution to the Einstein field equations representing an open anisotropic universe with the ghost field is found. This universe starts collapsing from tt \to -\infty and then expands to tt \to \infty without encountering singularities on its way. We further generalize these solutions to those describing inhomogeneous evolution of the ghost fields. Some interesting solutions with the plane symmetry are discussed. These have a property that the same line element solves the Einstein field equations in two mirror regions tz|t|\geq z and tz|t|\leq z, but in one region the solution has the \emph{right} and in the other, the \emph{wrong} signs of the kinetic energy. We argue, however, that a physical observer can not reach the mirror region in a finite proper time. Self-similar collapse/expansion of these fields are also briefly discussed.
Note:
  • Minor changes, new references added
  • field theory: scalar
  • space-time
  • Einstein equation: solution
  • cosmological model
  • symmetry: mirror
  • ghost
  • anisotropy