Tapping Limitless Quantities of Energy

SUMMARY

Applying the principles of system self-organization to the theories of the zero-point energy suggests that an appropriate system might be able to induce a coherence in the action of the zero-point energy.

Quantum electrodynamics shows that the ZPE intimately interacts with the various elementary particles with differing vacuum polarization dynamics. The vacuum polarization description of atomic nuclei suggests that abrupt, synchronous motion of ions or nuclei may be a good candidate for coherent vacuum energy activation.

The observed anomalies associated with the ion-acoustic oscillations of a plasma might be evidence for this. Further circumstantial evidence may arise from the claims of different investigators and inventors whose devices exhibit a common modus operandi: They utilize coherent, synchronous motion of ions or nuclei.

The largest claims are associated with devices that produce cycloid or precessional motion of nuclei. This leads to the hypothesis that a POSITIVELY CHARGED PLASMA VORTEX MIGHT INDUCE A ZPE COHERENCE.

The idea can be experimentally explored by rapidly circulating a charged plasma or fluid through a vortex ring piping system and looking for a gravitational or time variation since there is a recognized theorectical connection between gravity and the action of the zero-point energy.

Since vortex ring plasmoid pair production is observed in turbulent plasmas, modeling the ZPE as a turbulent, virtual plasma supports the vortex ring model for elementary charge and the vortex filament model for electric field lines.

Such a model predicts that the abrupt rotation of electric field lines would manifest virtual charge from the vacuum energy.

Experimental support that macroscopic, virtual charge pair production might provide energy directly from the ZPE arises from Hyde’s fully disclosed invention. It appears imperative that Hyde’s invention be replicated, for only a repeating experiment could prove that it is possible to tap the zero-point energy as an energy source.

ACKNOWLEDGEMENTS

The help of Oliver Nichelson, Adrea Powell and Carl Rhoades is gratefully acknowledged.

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