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Technical Summary: Unifying Galactic Rotation and the Hubble Tension: Evidence for a Coherent Quantum Galactic Medium

Depew, Jennifer · Zenodo (CERN)
Zenodo (CERN) · Papers · License: Open Access
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cosmologydarkmatterlargeobservations
Hubble Tension, dark matter, galactic rotation curves, galaxies, kinematics and dynamics, cosmology, observations, large-scale structure

Technical Summary: Unifying Galactic Rotation and the Hubble Tension: Evidence for a Coherent Quantum Galactic Medium | Zenodo Skip to main Communities My dashboard Log in Sign up Biphasic Quantum Hydrogen Published April 27, 2026 | Version v1 Technical note Open Technical Summary: Unifying Galactic Rotation and the Hubble Tension: Evidence for a Coherent Quantum Galactic Medium Authors/Creators Depew, Jennifer (Contact person) Description Core Thesis: We find that the effects in galactic dynamics attributed to 'dark matter' do not originate from a collisionless particle halo, but from a directional bulk flow (v_flow) that is systematically related to the properties of galactic baryonic matter; the anisotropic projection of this flow on cosmic scales happens to explain the observed value of the Hubble tension. The galaxies that deviate from the Power Series Trend line—from the scaling law, are not random "noise"; the deviations above or below the Trend line are a signal of the galaxies' variable coherence states. The amount of v_flow is their signature of quantum coherent* health . From Section 6.3 in the full paper : “ The H₆-FDC model unifies the galactic-scale anomaly (flat rotation curves) and the cosmic-scale anomaly (Hubble Tension) as two manifestations of the same coherent flow.” Testable: measuring v_flow in galaxies should predict the local Hubble constant variation. Galaxies with high coherence (strong v_flow) should live in regions where the Hubble constant appears higher/lower depending on flow direction. * By "quantum coherent" we mean a macroscopic quantum state analogous to a superfluid or condensate, where particles act in unison. In the H₆-FDC framework, this coherence is physical, structured, and measurable via v_flow. Implications: If v_flow is the real signal, then: Dark matter detectors will never find particles—they’re looking for the wrong thing Galaxy surveys should map v_flow, not just mass—coherence becomes a fundamental observable The Hubble Tension isn’t a crisis—it’s a clue—anisotropy is expected, not problematic Galaxy “health” becomes a meaningful concept—some galaxies are coherent, some decoherent, and we can measure why Files Hubble Tension Technical Summary 4 27 26.pdf Files (234.7 kB) Name Size Download all Hubble Tension Technical Summary 4 27 26.pdf md5:07a09f1d2e0933e99ff08ff7785aa505 234.7 kB Preview Download Additional details Related works Describes Preprint: 10.5281/zenodo.18736877 (DOI) Software Repository URL https://docs.google.com/spreadsheets/d/1Uib1NnxNE4PLektNa46fBDgrIQTjeu6FBIMJ3nqS5SQ/edit?usp=sharing 54 Views 18 Downloads Show more details All versions This version Views Total views 54 54 Downloads Total downloads 18 18 Data volume Total data volume 4.7 MB 4.7 MB More info on how stats are collected.... Versions External resources Indexed in OpenAIRE Communities Keywords and subjects Keywords Hubble Tension dark matter galactic rotation curves galaxies kinematics and dynamics cosmology observations large-scale structure anisotropy quantum hydrodynamics H_6-FDC Details DOI DOI Badge DOI 10.5281/zenodo.19825800 Markdown [![DOI](https://zenodo.org/badge/DOI/10.5281/zenodo.19825800.svg)](https://doi.org/10.5281/zenodo.19825800) reStructuredText .. image:: https://zenodo.org/badge/DOI/10.5281/zenodo.19825800.svg :target: https://doi.org/10.5281/zenodo.19825800 HTML <a href="https://doi.org/10.5281/zenodo.19825800"><img src="https://zenodo.org/badge/DOI/10.5281/zenodo.19825800.svg" alt="DOI"></a> Image URL https://zenodo.org/badge/DOI/10.5281/zenodo.19825800.svg Target URL https://doi.org/10.5281/zenodo.19825800 Resource type Technical note Publisher Zenodo Rights License Creative Commons Attribution 4.0 International The Creative Commons Attribution license allows re-distribution and re-use of a licensed work on the condition that the creator is appropriately credited. Read more Citation Export Technical metadata Created April 27, 2026 Modified April 27, 2026 Jump up About About Policies Infrastructure Principles Projects Roadmap Contact Blog Blog Support Help FAQ Developers REST API OAI-PMH Contribute GitHub Donate Funded by Powered by CERN Data Centre & InvenioRDM Status Privacy policy Cookie policy Terms of Use This site uses cookies. Find out more on how we use cookies Accept all cookies Accept only essential cookies

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