Quarks and Gluons
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This is a diagram of the quarks in a nucleus using the Quark}{Antiquark superposition as Gluon, akin to e+}{e- superposition as photon. The electron/positron spins are about the CM"s velocity vector direction as central axis of rotation, with uncertainty in spatial position due to that spin.
The 6 flavors of quark align with the 6 degrees of freedom (DOF) as 6 +/- directions in 3D space (+x, +y, +z, -x, -y, -z), and the extremely fast energy circulation spin with tangential speed at c projected those nucleon radial extent provides stability in those axes.
The distribution of 6 quarks in 8 octants of 3D space induces an off-axis tilt about the velocity direciton axis of 1/3, accounting for fractional charges in the nucleus.
Observational support of this model includes the presence of antiquarks in the quark/gluon plasma of matter, which is natural for the gluons as that superposition state as integrated phase inversion
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Quasi-matter with unusual quark combinations have directional deviation in mass, exactly as is expected if stability in some direction is missing due to the missing quark's directionally-aligned stability contribution.
These spins about the spatial axes are not exactly opposite, as they are for time phasing spins about central velocity vector in the case of electrons and positrons. Those interacting in phase spins having Like charges induce reflection as EM repulsion within an energy circulation extent, with self-reflection accounting for EM dispersion from the photon's electron/positron wavelength in constructive interference superposition. These spins around the directed spatial axes do not induce reflection, but rather angular interactions as attractive spins, never repulsive interactions, so the energy in the nucleus is constrained and tangled by these rotational interactions, inducing extensive angular momentum interactions within the nucleus.
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Atomic Emission
The envisioned mechanism for photon emission from Atoms is through the Nucleus, where the assembled Photon structure (e-}{e+) typically interacts with attractive EM Force between the electron_lobe and the atom's nuclear Proton - symbolically Proton'3(q}{~q})'(+charge)}{e-}Photon{e+}. The quarks like electrons and positrons spin at tangential max speed c, but about spatial axes, so the inter_spin rate is |c*-c|=c^2. If an electron-lobe is drawn through the inter_quark gap, the tangential speed will be a linear translation at rate c@angle_of_orientation as the entire superposed assembly achieves v=c@ejection_angle.
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Since E/m = (c^2, (-c)^2), and matter_antimatter interactions like e-}{e+ yield 2 photons in opposite directions, the projection is for atomic emission to be pairs of opposite direction photons again, where the Combined Brightness of two "half-bright" photons is equivalent to one full-bright photon. Experiments could correlate emission detections at 180 degree orientations to validate or falsify this projection.
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