Bulletin of the American Physical Society
Fall 2024 Joint Meeting of the Texas Section of the APS, Texas Section of the AAPT & Zone 13 of the SPS
Thursday–Saturday, October 17–19, 2024; Southern Methodist University, Dallas, Texas
Session F06: Theoretical Physics
10:30 AM–11:42 AM,
Friday, October 18, 2024
Southern Methodist University
Room: Hughes-Triggs 226
Chair: Jeremy Holt, Texas A&M University College Station
Abstract: F06.00003 : Traversable Wormholes in f(R) Gravity Theories
10:54 AM–11:06 AM
Presenter:
Ramesh Radhakrishnan
(Baylor University)
Authors:
Ramesh Radhakrishnan
(Baylor University)
Patrick Michael Brown
(Baylor University)
Jacob Matulevich
(Baylor university)
Eric W Davis
(Baylor university)
Delaram Mirfendereski
(UTRGV)
Gerald Cleaver
(Baylor University)
It has been proven that in standard Einstein gravity, exotic matter (i.e., matter violating the pointwise and averaged Weak and Null Energy Conditions) is required to stabilize traversable wormholes. Quantum field theory permits these violations due to the quantum coherent effects found in any quantum field. Even reasonable classical scalar fields violate the energy conditions. In the case of the Casimir effect and squeezed vacuum states, these violations have been experimentally proven. It is advantageous to investigate methods to minimize the use of exotic matter. One such area of interest is extended theories of Einstein gravity. It has been claimed that in some extended theories, stable traversable wormholes solutions can be found without the use of exotic matter. There are many extended theories of gravity, and in this review paper, we first explore f(R) theories and then explore some wormhole solutions in f(R) theories, including Lovelock gravity and Einstein dilaton Gauss–Bonnet (EdGB) gravity. For completeness, we have also reviewed ‘Other wormholes’ such as Casimir wormholes, dark matter halo wormholes, thin-shell wormholes, and Nonlocal Gravity (NLG) wormholes, where alternative techniques are used to either avoid or reduce the amount of exotic matter that is required.
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