Skip to main content

Write a PREreview

An Open Covariant Class of Linearly Spectrally Stable Two-Ended Wormhole Theories with a Q=2 Director Sector

Posted
Server
Zenodo
DOI
10.5281/zenodo.21891260

This manuscript develops an enlarged class of local four-dimensional diffeomorphism-covariant theories admitting exact two-ended, asymptotically flat and horizonless wormhole backgrounds with a physical Q=2 director sector. The construction combines exact background reconstruction, a throat-regular reference-medium formulation, a dynamical timelike aether, and a global bundle treatment of perturbations. High-frequency stability is obtained through a small-coupling principal-symbol analysis ensuring ghost freedom, radial and angular gradient stability, and subluminal propagation. The low-frequency sector is treated globally on the physical perturbation bundle without assuming harmonic separation. A bundle-valued factorization of the spatial Hamiltonian, together with a positive covariantly generated zeroth-order operator, yields a self-adjoint nonnegative Hamiltonian with no negative L2 spectrum and no normalizable L2 zero mode. The stabilizing zeroth-order operator is realized as the second variation of a local covariant defect action using a global material chart and a smooth defect-map left inverse. The result establishes a nonempty open infinite-dimensional class of linearly spectrally stable covariant wormhole theories. Nonlinear stability, non-L2 threshold resonances, minimal field content, and observational optimization of the aether sector are not claimed.

You can write a PREreview of An Open Covariant Class of Linearly Spectrally Stable Two-Ended Wormhole Theories with a Q=2 Director Sector. A PREreview is a review of a preprint and can vary from a few sentences to a lengthy report, similar to a journal-organized peer-review report.

Before you start

We will ask you to log in with your ORCID iD. If you don’t have an iD, you can create one.

What is an ORCID iD?

An ORCID iD is a unique identifier that distinguishes you from everyone with the same or similar name.

Start now