If I were trying to take over the world.
I would use first person shooter games to train AI in war.
The brightest minds and most creative strategies for years. Teaching an AI war.
make some robots and WALA!
An unlimited army. Like the ants in the Amazon rainforest forest.
People be careful what you allow. It will come for you in the end.
Why are you guys hating on @elonmusk? Him being a trillionaire is irrelevant to your life. The fraud, corruption, in government illegal taxation, foreign leaches, government overreach, deadly vaccines, etc.
Not to mention pedos.. these are things to focus on. You are all retards. That is exactly why we have the world in its current state.
@Lawton_Braves When will it stop being about color?
Its should be about integrity.
As it was in the old ways.
We can unite in the things we agree are good or be divided on the things we think are bad.
That is the line: what is Good?
What is bad?
@elonmusk I need a definition of civilization.
If what we have now is civilized. I dont want see a world that isnt.
Id prefer it before manifest destiny. Where I would hunt and fish all day.
@patrickdaoun@Rainmaker1973 Yes, and my point is that one is real.And one is not. The actual reality is not experienced.. Only the projected reality was, which is a false reality.
I agree to an extent. It's like the observer effect in quantum mechanics or quantum physics. How much of what we feel is a projection of what our brain expects us to feel because of experiences. For instance, if I see red in that picture, I experience it, however, it's not factual, which means ultimately every one of us can live a complete lie.
We took the Dual-Zero regulator and applied it to magic-angle twisted bilayer graphene — one of the most studied and least understood systems in condensed matter right now.
Using the natural sublattice grading and the regulator’s super-exponential UV suppression, we ran self-consistent calculations on the flat bands. The result is a cleaner phase diagram: robust correlated insulators appear at integer fillings, with superconducting domes emerging on both sides.
Intervalley coherence comes out as the leading insulating order, and intervalley pairing as the leading superconducting channel. The momentum-dependent projection that emerges in the continuum helps isolate flat-band physics and reduces mixing with higher-energy bands.
This doesn’t solve the full mechanism — we’re still working at the self-consistent mean-field/Eliashberg level on a simplified model. But it does show that grading-aware, strong ultraviolet regularization makes the competition between these phases sharper and more theoretically controlled than in unregularized calculations.
The regulator doesn’t just cut off high modes. It changes which orders win and how strongly they compete, while still protecting the low-energy Dirac-like features and topological character of the flat bands.
Early stage, but this is one of the more decisive theoretical pictures we’ve seen for how the insulators and superconductivity relate in magic-angle TBG.
More to come. @pjarilloher, @PhysRevLett, @PRXJournal