Another possible connection, for this hypothesis could be the way neutrinos are like building blocks for antimatter and dark matter interactions. Since, neutrinos are providing mass to antimatter and antimatter are interacting with dark matter in such a way that antimatter-darkmatter combinations are future source for making Time Travel possible. There are no such cooper pairs, because of strong electroweak symmetry breaking it is disrupted and it seems that there is a triad of neutrino, spin dependent Dirac gaugino neutralino and slepton. (Charginos, gaugino Neutralinos and Sleptons) In this triad there is one particle which is common to either baryonic and non-baryonic masses, and it shifts its position (or, it is exchanged) from one triad of baryons to the triads of non-baryonic dark matter. The particle which is shifting its position must be the lightest candidate for the dark matter, and this must be non-decaying. There is no such majorana particles, it means, the particle which are their own antiparticle. This could be interpreted as neutrinos are kind of Dirac neutrino. Neutrinos will look as if it is its own antiparticle when seen from other side. This validates the truth that antimatter is not the mirror particle to matter, but the dark matter is. Since, neutrino provides mass to anti-matter, so it must be shifting its position from baryonic triads to non-baryonic triads, and it must be non-decaying. Actually what happens is that, baryonic triad and non-baryonic triad both have two comparatively heavy particles, and one particle is the lightest; as on the interface surface plasmons, Fermi liquid, which is not that liquid, somewhat viscous, the less heavy particle from baryonic triad shifts to the nonbaryonic triad, and the less heavy particle from the nonbaryonic triad, moves into the baryonic triads to take its place, which seems to be a void, but the lightest particle in the baryonic triad takes the position of the less heavy particle, in its triad, so, the less heavy particle which moves from the nonbaryonic triad, now takes the void created by the lightest particle in the baryonic triad, and it is known as wimp or most possible candidate for the dark matter. So, this is the particle, which is common to both baryonic and non baryonic masses, and the lightest particle in the baryonic triad shifts it position, in its triad, and fills the void created by the less heavy particle from the baryonic triad, which becomes the part of the nonbaryonic triad. In the nonbaryonic triad there is one other particle comparatively heavier and the other the heaviest, which, remains in its triad only. (I don’t believe E=mc2 is correct and depending on particle life time, it is impossible to predict particle mass accurately, so, I am using comparative masses) This, shifting of particles from baryonic triad to, nonbaryonic triad, and within the baryonic triad could be compared as spinons and holons. It could be explained by modified quantum chromodynamics, or quantum holography, this is a phenomenon called Light Emitting Diaphragms (can be prepared by using some metamaterials or OLEDs), which emits light, and this light is able to change spins of the particle, and changing spins of the particle can even change its gravitational properties (Light Vortexes), vaporizing dark matter, or antigravity dark matter particles and or provide explanation for the nature of nonbaryonic masses, charge, parity, and time reversal violations, shown by antimatter, and how antimatter gains its mass from neutrinos. Possible connections could be, quantum classicality, hidden variables, plasmonic resonance, surface plasmons, etc. There are several natural quantum phenomenons, which could be explained in classical scenario as well, this is still possible after considering quantum wave function as a real entity. (All these experiments, have been published in the journal Nature, till now)
The possibility of new physics is overwhelming!