Quantum Impedance Networks of Dark Matter and Dark Energy
POSTER
Abstract
Mass is quantized. All rest mass particles have quantum impedance networks of wavefunction interactions, easily calculated and transformed to eletromagnetic networks via the electromechanical oscillator. Impedance matching governs amplitude and phase of energy flow, of information transmission. Impedances are of two varieties, scale dependent geometric, and scale invariant topological. Understanding the complementary roles of topological duality of pseudoscalar magnetic and scalar electric charge in their shared quantum impedance networks offers insights into both dark matter and dark energy on cosmological scales.
Publication: P. Cameron "Quantized Impedance Networks of Dark Matter and Dark Energy", Submitted to the Proceedings of the US Community Studyon the Future of Particle Physics (Snowmass 2021) http://dx.doi.org/10.13140/RG.2.2.23468.95360
Presenters
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Peter Cameron
Michigan/MIT/Brookhaven
Authors
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Peter Cameron
Michigan/MIT/Brookhaven