PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
December 11, 2025Journal of High Energy Physics2 citationsOpen Access

On the uplift of 4D wormholes in braneworld models and their 5D structure

View Full Paper
TPThomas D. PappasΘΝΘεόδωρος Νάκας

Key Points

  • The aim is to establish general conditions for 4D wormhole embeddings in braneworld models, focusing on 5D characteristics.
  • Developed a framework using the General Embedding Algorithm.
  • Examined uplift conditions for various 4D wormhole spacetimes.
  • Analyzed curvature invariants and flare-out conditions.
  • Established new flare-out conditions differing from those in flat extra dimensions.
  • Revealed implications of warped extra dimensions for the structure of 5D wormholes.

Abstract

A bstract Recent developments for the consistent embedding of general 4D static and spherically-symmetric spacetimes in arbitrary single-brane braneworld models in the form of the General Embedding Algorithm (GEA) Phys.Rev. D 109 (2024) L041501, initiated the program of studying the bulk structure of braneworld wormholes. In this article, adopting a completely generic approach, we derive the general conditions that the metric functions of any braneworld spacetime must satisfy to describe a wormhole structure in the bulk. Particular emphasis is placed on clarifying the proper uplift of 4D spacetimes, expressed in terms of arbitrary radial coordinates on the brane, and we demonstrate the important role of the circumferential radius metric function r ( u ) for the embedding. To ensure applicability even when r ( u ) is non-invertible, we develop an extended formulation of the GEA. Additionally, the flare-out conditions for braneworld wormholes are presented for the first time and are found to differ from the case of flat extra dimensions. To illustrate the method, we first perform the uplift into both thin (Randall-Sundrum II) and thick braneworld models for four well-known 4D wormhole spacetimes: the effective braneworld wormhole solutions of Casadio-Fabbri-Mazzacurati and Bronnikov-Kim, the Simpson-Visser spacetime, and the Ellis-Bronnikov or “anti-Fisher” solution. Subsequently, we study their bulk features by means of curvature invariants, flare-out conditions, energy conditions and embedding diagrams. Our analysis reveals that the assumption of a warped extra dimension has non-trivial implications for the structure of 5D wormholes.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Pappas et al. (2025) studied this question.

synapsesocial.com/papers/69401b262d562116f28f7872https://doi.org/10.1007/jhep12(2025)090
Ask AI
Helpful
Bookmark
Share
View Full Paper