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Scalar fields, energy conditions, and traversable wormholes

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arxiv gr-qc/0003025 v2 pith:WPOHMFPD submitted 2000-03-08 gr-qc

Scalar fields, energy conditions, and traversable wormholes

classification gr-qc
keywords scalarfieldtraversableenergywormholesclassicalconditionscoupled
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We describe the different possibilities that a simple and apparently quite harmless classical scalar field theory provides to violate the energy conditions. We demonstrate that a non-minimally coupled scalar field with a positive curvature coupling xi>0 can easily violate all the standard energy conditions, up to and including the averaged null energy condition (ANEC). Indeed this violation of the ANEC suggests the possible existence of traversable wormholes supported by non-minimally coupled scalars. To investigate this possibility we derive the classical solutions for gravity plus a general (arbitrary xi) massless non-minimally coupled scalar field, restricting attention to the static and spherically symmetric configurations. Among these classical solutions we find an entire branch of traversable wormholes for every xi>0. (This includes and generalizes the case of conformal coupling xi=1/6 we considered in Phys. Lett. B466 (1999) 127--134; gr-qc/9908029) For these traversable wormholes to exist we demonstrate that the scalar field must reach trans-Planckian values somewhere in the geometry. We discuss how this can be accommodated within the current state of the art regarding scalar fields in modern theoretical physics. We emphasize that these scalar field theories, and the traversable wormhole solutions we derive, are compatible with all known experimental constraints from both particle physics and gravity.

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Cited by 3 Pith papers

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    gr-qc 2026-08 accept novelty 5.0

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  2. Energy conditions in static, spherically symmetric spacetimes and effective geometries

    gr-qc 2026-04 unverdicted novelty 5.0

    A logarithmic correction to Schwarzschild in static spherical symmetry obeys all classical energy conditions and serves as an effective exterior for horizon-bearing and horizonless compact objects.

  3. Energy conditions in static, spherically symmetric spacetimes and effective geometries

    gr-qc 2026-04 unverdicted novelty 5.0

    A constructive algorithm yields NEC-obeying static spherical metrics with g_tt g_rr = -1, including a log-corrected Schwarzschild geometry that can mimic black holes.