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Chris Allen Broka

Publications and source records attributed to Chris Allen Broka.

4 recordsLinked to original sources

Consciousness and the Problem of Quantum Measurement

A variant of the von Neumann-Wigner Interpretation is proposed. It does not make use of the familiar language of wave functions and observers. Instead it pictures the state of the physical world as a vector in a Fock space and, therefore not, literally, a function of any spacetime coordinates. And, rather than segregating consciousness into individual points of view (each carrying with it a sense of its proper time), this model proposes only unitary states of consciousness, Q(t), where t represents a fiducial time with respect to which both the state of the physical world and the state of consciousness evolve. States in our world's Fock space are classified as either 'admissible' (meaning they correspond to definite states of consciousness) or 'inadmissible' (meaning they do not). The evolution of the state vector of the world is such as to always keep it restricted to 'admissible' states. Consciousness is treated rather like what Chalmers has called an "m-property." We try to show that problems with the quantum Zeno effect do not arise from this model. The measurement of degenerate states is also discussed, as is the EPR paradox. Finally, it is suggested that the universe is far more likely to contain conscious observers than not.

quant-ph

Ball Lightning as a Hot, Highly Charged, Sphere of Air

An exceptionally simple model of ball lightning is proposed that describes it as a highly charged sphere of hot, conductive, air surrounded by colder air. This conductive sphere possesses a net excess of charge. This charge will create a corona discharge that will heat the surrounding air thus maintaining the temperature of the ball itself. Numerical simulations are presented which give results that would appear to agree with what many witnesses have reported. It is argued that such spheres are likely positively charged.

physics.plasm-ph

Gravitation and the Problem of Quantum Measurement

We consider the possibility that the goal of quantizing General Relativity should be abandoned in favor of Semiclassical Gravity. A formalism is provided for doing so. The quantum measurement problem is investigated in this context. Particular attention is paid to the EPR paradox and the Page-Geilker experiment.

quant-ph

Foo Fighters and Microwave Oven Plasma Balls

An explanation is given for two peculiar phenomena - Foo Fighters and microwave oven plasma balls. Both are proposed to arise from the interaction of microwave energy with areas of hot, partially ionized, gas. In the former case it is suggested that the airplane's own radar irradiated its hot exhaust thus producing a glowing object that appeared to follow it. The physics of these situations is examined and we attempt to delineate the temperatures and field strengths necessary for such processes to be viable. To do this we employ an interesting iterative method for the solution of the appropriate partial differential equations. We find that both processes do make good physical sense although the field strengths required are towards the higher end of what would be considered reasonable.

physics.pop-ph