Quantum Field & Dimension Explorer
Adjust the sliders to explore how mass gaps, extra dimensions, recursive feedback, and topological complexity interact in our theoretical model.
Quantum Field Unification
Exploring the connection between Yang-Mills mass gaps and fluctuations in extra-dimensional Calabi-Yau manifolds, seeking to unify quantum mechanics and general relativity.
Current research suggests that extra dimensions may stabilize the quantum vacuum, producing observable mass gaps in particle physics.
Recursive Feedback
Modeling intelligence as an emergent property of recursive feedback loops within geometric structures, drawing parallels between physical systems and cognitive processes.
Geometric resonance in complex topological spaces may encode the fundamental nature of both quantum systems and intelligence.
Holographic Theorems
Deriving mass as a property of topological invariants within the holographic principle, redefining how we understand particles and their interactions.
The holographic principle suggests information is encoded on boundaries, potentially linking mass to spacetime's topological structure.