منابع مشابه
Once again on thin-shell wormholes in scalar-tensor gravity
It has been recently proved in a general form [1] that no wormholes can be formed in any scalartensor theory (STT) of gravity in which the non-minimal coupling function f(Φ) is everywhere positive and the scalar field Φ itself is not a ghost if matter sources of gravity respect the Null Energy Condition (NEC). In order to construct any viable and stable wormhole solution, attempts have been rec...
متن کاملGeometric Dilaton Gravity and Smooth Charged Wormholes *
A particular type of coupling of the dilaton field to the metric is shown to admit a simple geometric interpretation in terms of a volume element density independent from the metric. For dimension n = 4 two families of either magnetically or electrically charged static spherically symmetric solutions to the Maxwell–Einstein–Dilaton field equations are derived. Whereas the metrics of the “magnet...
متن کاملRing Wormholes in D-dimensional Einstein and Dilaton Gravity
On the basis of exact solutions to the Einstein—Abelian gauge—dilaton equations in D-dimensional gravity, the properties of static axially symmetric configurations are discussed. Solutions free of curvature singularities are selected; they can be attributed to traversible wormholes with cosmic string-like singularities at their necks. In the presence of an electromagnetic field some of these wo...
متن کاملTextures in Dilaton Gravity
We examine the field equations of a self-gravitating texture in low-energy superstring gravity, allowing for an arbitrary coupling of the texture field to the dilaton. Both massive and massless dilatons are considered. For the massless dilaton, we find that non-singular spacetimes only exist for certain values of the coupling, dependent on the gravitational strength of the texture. For the mass...
متن کاملTwo-Dimensional Dilaton Gravity
I briefly summarize recent results on classical and quantum dilaton gravity in 1+1 dimensions.
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ژورنال
عنوان ژورنال: Physical Review D
سال: 2005
ISSN: 1550-7998,1550-2368
DOI: 10.1103/physrevd.71.127501