This DIA reference calculates what effects could follow if a future technology could control the spacetime metric. It supplies no mechanism for doing so and repeatedly states that required energy densities, exotic matter, and practical engineering capabilities are far beyond present technology.
Negative Energy
TopicNegative Energy
TopicRep. Lauren Boebert: "There's a lot to do with portals in the UFO documentation we are seeing at Congress" πΈπ½ Earlier today the Pentagon unclassified Defence Intelligence Agency files have been studying wormholes, negative energy & stargates. The Colorado congresswoman said whistleblowers have come to Congress in private settings with claims about breeding between biological beings and humans. She said they asked lawmakers to visit actual bases and see it themselves, but that access was den...
The Defence Intelligence Agency have been studying wormholes, negative energy & stargates. πΈπ Could Portals be more reality than fiction? https://t.co/vG [Quoted] The DIA was studying traversable wormholes, negative energy and stargates. These images are straight from the 2010 paper released in the UFO files. https://t.co/OWxgDcnX6E

This DIA reference surveys proposed gravity-control effects from Newtonian mechanics, general relativity, cosmology, Casimir physics, and quantum models. Its engineering assessment is restrictive: no active-gravity technology existed, laboratory effects were minute, and useful devices would require extreme mass, energy density, acceleration, scale, or amplification that had not been demonstrated.
This DIA reference explores whether hypothetical control of extra dimensions could change local dark-energy density and create a warp-like spacetime bubble. The proposal remains theoretical: dark energy and extra dimensions were not understood or controllable, and even the reduced energy estimates exceeded foreseeable capability.
This DIA reference reviews traversable-wormhole geometry and possible sources of negative energy. Quantum effects can produce small local negative-energy regions, but the report finds standard Casimir and moving-mirror methods inadequate for macroscopic engineering and says general relativity provides no assembly instructions.
This 51-page DIA reference report reviews laboratory-scale negative-energy states and proposes quantum optical homodyne tomography to measure squeezed-light and Casimir-vacuum fluctuations. It separates observed microscopic effects from speculative aerospace applications, stressing that access to larger, longer-lived negative-energy distributions is unknown and that quantum-inequality constraints remain experimentally unsettled.


