The Pressure to Expand: A Dynamic Equilibrium Model of Photon Beam Propagation in the QBB Theories - RJW
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In the Quantum Big Bang (QBB) framework, photons are structured double-helix force-lines carrying both hidden mass (geometric orbital drag) and effective charge-like character. When photons travel together in a beam, mutual repulsion between like charge components generates an intrinsic pressure to expand. This pressure is initially strong but slows as photon density decreases. Hidden mass provides inertial resistance, while coherent polarization allows attractive interlocking (electron-wave to positron-wave) that reduces net repulsion. Over sufficient distance, these forces can reach a dynamic equilibrium, greatly slowing further expansion. Entropy eventually disrupts this balance, but its impact is limited once equilibrium is reached. This model offers a physical explanation for why light remains surprisingly coherent over cosmic distances.Authors note: Thanks for reading. May your path to elegance be rewarding. RJW



