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Bibliographic Details
Main Author: Dunn, James E.
Format: Recurso digital
Language:English
Published: Zenodo 2026
Subjects:
Online Access:https://doi.org/10.5281/zenodo.19141978
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author Dunn, James E.
author_facet Dunn, James E.
contents Establishes IE-002: coupling geometry is directional. The projection asymmetry invariant combines spherical harmonic amplitude ratios with phase differences to extract the projection of asymmetry onto the coupling axis. Confirmed via 20 eccentric BBH waveforms from SXS catalog showing sign reversal in h21 mode across eccentricity. Transforms coupling from scalar to directional quantity. GCT Letters series.
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publishDate 2026
publisher Zenodo
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spellingShingle Projection Asymmetry in Toroidal Coupling: IE-002 and the Directional Structure of Coupling Geometry
Dunn, James E.
geometric coupling theory
correction cascade
d-cascade
alpha=1.920
coupling invariant
unabsorbed factor
sign-flip boundary
James E. Dunn
IE-002
projection asymmetry
h21 mode
SXS catalog
gravitational waves
eccentric BBH
directional coupling
GCT Letters
Establishes IE-002: coupling geometry is directional. The projection asymmetry invariant combines spherical harmonic amplitude ratios with phase differences to extract the projection of asymmetry onto the coupling axis. Confirmed via 20 eccentric BBH waveforms from SXS catalog showing sign reversal in h21 mode across eccentricity. Transforms coupling from scalar to directional quantity. GCT Letters series.
title Projection Asymmetry in Toroidal Coupling: IE-002 and the Directional Structure of Coupling Geometry
topic geometric coupling theory
correction cascade
d-cascade
alpha=1.920
coupling invariant
unabsorbed factor
sign-flip boundary
James E. Dunn
IE-002
projection asymmetry
h21 mode
SXS catalog
gravitational waves
eccentric BBH
directional coupling
GCT Letters
url https://doi.org/10.5281/zenodo.19141978