Making Fusion Easier: Orientation and Polarization Effects from Rotor-Structured Nucleons

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Autore principale: Cobb, Stephen Euin
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Cobb, Stephen Euin
author_facet Cobb, Stephen Euin
contents <p>This paper shows that nuclear fusion can be made easier when the internal geometry of protons and neutrons is taken into account. Using four-dimensional rotor models, it predicts orientation- and polarization-dependent corrections to the Coulomb barrier that can enhance low-energy fusion rates by up to an order of magnitude—offering a falsifiable, geometry-based path toward more efficient fusion. The paper also outlines practical experimental setups using polarized beams, crystalline targets, and field-assisted molecular alignment to test these predictions directly.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17290597
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Making Fusion Easier: Orientation and Polarization Effects from Rotor-Structured Nucleons
Cobb, Stephen Euin
rotor-structured fusion
anisotropic tunneling
orientation effects
polarization alignment
sub-Coulomb barrier
four-dimensional nucleon structure
T³ proton model
Core–Sheath neutron
spin-polarized fusion
crystal-channel and field-assisted fusion
<p>This paper shows that nuclear fusion can be made easier when the internal geometry of protons and neutrons is taken into account. Using four-dimensional rotor models, it predicts orientation- and polarization-dependent corrections to the Coulomb barrier that can enhance low-energy fusion rates by up to an order of magnitude—offering a falsifiable, geometry-based path toward more efficient fusion. The paper also outlines practical experimental setups using polarized beams, crystalline targets, and field-assisted molecular alignment to test these predictions directly.</p>
title Making Fusion Easier: Orientation and Polarization Effects from Rotor-Structured Nucleons
topic rotor-structured fusion
anisotropic tunneling
orientation effects
polarization alignment
sub-Coulomb barrier
four-dimensional nucleon structure
T³ proton model
Core–Sheath neutron
spin-polarized fusion
crystal-channel and field-assisted fusion
url https://doi.org/10.5281/zenodo.17290597