09/06/2026
Outside of UPR News, our Editor is the Chief Global Solutions Maker for a "higher order" organization, focused on developing "global solutions".
This includes our work into the biochemistry of choice, which is directly-linked to the crave center of the brain, within the hypothalamus, and our decision-making and conduct is largely resource-based. See our Hypothalamus News section to learn more about that research.
We also work on comparative primatology to better understand human behavior.
Separately, we have been working on particle physics solutions for large problems not yet solved by mathematical physicists, enabled by artificial intelligence.
One of the other global solutions we have been working on, is researching the nature of gravity and anti-gravity, which led us to tackling the Yang-Mills Mass Gap problem in mathematical physics. One of several problems in physics.
Very simply, we tracked visible mass down to the Higgs field, and then to other mass contributions, and found that one of the greatest sources of mass beyond Higgs contributions was found within the strong nuclear force, which science majors would best recognize as the energy bound or confined between quarks and gluons to form the protons and neutrons inside the atoms of the periodic table, each composed of 8 different gluon force particles and 3 quarks, in complexes known as hadrons. Most of the mass we are familiar with is found here, as trapped or confined energy within protons and neutrons, between gluons and quarks, and an energy that Einstein's famous equation converts into what we know as mass -- a type of confined, potential, or grouped energy -- and if released, a nuclear weapon to destroy civilizations, but also a source of energy to power civilizations.
It turned out that trying to find a single source of mass generation was impossible, and mass is used to calculate gravity, and so gravity was going to prove to be complex, because of how many sources of mass were found, and the nature of mass in general, again a type of confined, potential, or stored energy in many regards, and yet this is only well known for the visible mass in the universe, with dark matter contributing to much more mass, but which researchers this year proposed could turn into gravitons (gravity), which could then turn into photons or light particles, the basis for electricity and magnetism.
https://phys.org/news/2026-08-cosmic-filaments-limits-dark-decay.html
And so understanding gravity is key to understanding mass, and understanding mass is key to understanding gravity, but also anti-gravity, if the same can exist at all.
The mass of most particles is partially expressed in electron volts, divided by the speed of light squared, a function of Einstein's E=mc(Exp.2), where the confined energy, divided by the speed of light squared, is the equation for mass. And so mass is a characteristic of energy, and gravity is a characteristic of mass.
And so during this research we fell upon the Yang-Mills mass gap dilemma, one of many big problems in physics.
"In this statement, a quantum Yang–Mills theory is a non-abelian quantum field theory similar to that underlying the Standard Model of particle physics; R4 is Euclidean 4-space; the mass gap Δ is the mass of the least massive particle predicted by the theory.
Therefore, the winner must prove that:
- Yang–Mills theory exists and satisfies the standard of rigor that characterizes contemporary mathematical physics, in particular constructive quantum field theory,[2][3] and
- The mass of all particles of the force field predicted by the theory are strictly positive.
For example, in the case of G=SU(3)—the strong nuclear interaction—the winner must prove that glueballs have a lower mass bound, and thus cannot be arbitrarily light.
The general problem of determining the presence of a mass gap (a special case of a spectral gap) in a system is known to be undecidable, meaning no computer algorithm exists that can find the answer programmatically.[4][5]"
https://en.wikipedia.org/wiki/Yang%E2%80%93Mills_existence_and_mass_gap
And so for about a year, we have been working on developing the understanding required to start to try and develop a solution in physics to this problem, in search of the elusive graviton and anti-gravity, directly linked to mass, but not just mass.
Here is our proposed solution, after working with artificial intelligence for about a year.
This was based on our previous research into the same.
And this was based on us working on black hole collisions data to parse a graviton out of gravity waves.
Now we have significantly developed more mathematical physics theories to fill in the "gap".