Quantum Gravity and String Theory

   

Examination of Minimum Time Step, from Modified Heisenberg Uncertainty Principle, Inflaton Physics and Black Hole Physics

Authors: Andrew Beckwith

First, we calculate the minimum length for the creation of a 10^45 Hz relic Gravitational wave. Next, we look Padamababhan’s inflaton physics, and work done by the author for a modified Heisenberg Uncertainty principle for constraints on a minimum time step. Sciama’s work in “Black hole explosions” (1982) gives us a linkage between a decay rate for black holes, in terms of a life time, and the mass, M of the black hole, which when combined with a simple exposition from Susskind and Hrabovsky (2013) for the most basic evolution the time change in energy E(t), which is how we form a first order treatment of the square of a minimum time step Delta t. We then reference what was done by Ng (2008) as far as infinite quantum statistics, for entropy as a particle count, and from first principle get constraints upon entropy production, as a function of boundaries on minimum time step. We assume massive Gravity, and obtain a peak 10^36 Giga Hertz frequency range (10^45 Hertz) for relic Gravitational waves, and Gravitons.

Comments: 8 Pages.

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Submission history

[v1] 2016-09-04 18:01:20

Unique-IP document downloads: 156 times

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