Nine physical energy scales are claimed to fall on one straight line generated by a strongly fluctuating lattice with log-normal link sizes, and the same line is used to estimate the electron and muon g-2 deviations from the Standard Model.
Initial Condition Model from Imaginary Part of Action and the Information Loss
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abstract
We review slightly a work by Horowitz and Maldecena solving the information loss problem for black holes by having inside the blackhole - near to the singularity - a boundary condition, as e.g the no boundary proposal by Hartle and Hawking. Here we propose to make this boundary condition come out of our imaginary action model (together with Masao Ninomiya). This model naturally begins effectively to set up boundaries - whether it be in future or past! - especially strongly whenever we reach to high energy physics regimes, such as near the black hole singularity, or in Higgs producing machines as LHC or SSC. In such cases one can say our model predicts miracles. The point is that you may say that the information loss problem, unless you solve it in other ways, call for such a violation of time causality as in our imaginary action model!
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Approximate Minimal SU(5), Several Fundamental Scales, Fluctuating Lattice
Nine physical energy scales are claimed to fall on one straight line generated by a strongly fluctuating lattice with log-normal link sizes, and the same line is used to estimate the electron and muon g-2 deviations from the Standard Model.