Geometric Coupling Theory — Paper 1: Gravitational Wave Burst Template from Primordial Black Hole Reverse Coupling
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2026
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| _version_ | 1866901915653111808 |
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| author | Dunn, James E. |
| author_facet | Dunn, James E. |
| contents | <p>First paper in the Geometric Coupling Theory (GCT) programme, extending the Interpretive Architecture (IA) corpus. Derives a gravitational wave burst template for primordial black hole reverse coupling events using a spin-precessing effective-one-body (EOB) framework at 2PN order. Demonstrates that the h+/h× polarization ratio encodes the binary mass ratio as an intrinsic observable, with numerical simulations across three mass ratios (q = 1:1, 1:3, 1:10) and full viewing-angle analysis confirming systematic scaling. Proposes that different detector orientations constitute different measurement substrates, connecting waveform observables to the substrate-relative classification framework developed in the IA corpus.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18933882 |
| institution | Zenodo |
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| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Geometric Coupling Theory — Paper 1: Gravitational Wave Burst Template from Primordial Black Hole Reverse Coupling Dunn, James E. Geometric Coupling Theory gravitational waves primordial black holes polarization asymmetry Interpretive Architecture <p>First paper in the Geometric Coupling Theory (GCT) programme, extending the Interpretive Architecture (IA) corpus. Derives a gravitational wave burst template for primordial black hole reverse coupling events using a spin-precessing effective-one-body (EOB) framework at 2PN order. Demonstrates that the h+/h× polarization ratio encodes the binary mass ratio as an intrinsic observable, with numerical simulations across three mass ratios (q = 1:1, 1:3, 1:10) and full viewing-angle analysis confirming systematic scaling. Proposes that different detector orientations constitute different measurement substrates, connecting waveform observables to the substrate-relative classification framework developed in the IA corpus.</p> |
| title | Geometric Coupling Theory — Paper 1: Gravitational Wave Burst Template from Primordial Black Hole Reverse Coupling |
| topic | Geometric Coupling Theory gravitational waves primordial black holes polarization asymmetry Interpretive Architecture |
| url | https://doi.org/10.5281/zenodo.18933882 |