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arxiv 2407.14693 v4 pith:P5MMGW2K submitted 2024-07-19 gr-qc

On the asymmetric non-canonical braneworld in five dimensions

classification gr-qc
keywords branenon-canonicalasymmetricmassivemodestheoryamplitudesbraneworld
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Revisiting Einstein's gravitational theory, we build a five-dimensional braneworld. Within this framework, one announces the appearance of symmetric and asymmetric domain walls. Furthermore, it examines the emergent four-dimensional gravity from a theory with non-canonical dynamics. Exploring the physical and mathematical aspects, e.g., brane's energy density and the Kaluza-Klein (KK) spectrum, one verifies that brane splitting is absent in the canonical and non-canonical theories. Additionally, we note the localization of the four-dimensional fluctuation projection on the 3-branes, which ensures the theory's stability. Thereby, one can conclude that the behavior of gravitational perturbations of the domain wall maintains a profile similar to a stable and non-localizable tower of massive modes. In contrast, within the brane core, the matter sector generates new barriers and potential wells, resulting in massive modes with approximately symmetric amplitudes. However, the non-canonical dynamics generate massive modes with asymmetric amplitudes far from the 3-brane.

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  1. Interactions between different Kaluza-Klein modes in brane world

    hep-th 2024-12 unverdicted novelty 5.0

    The Orthonormal Completeness Hypothesis implies universal interactions between KK modes in brane-world effective actions for U(1) gauge and fermion fields.