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From the Cosmological Constant: Higgs Boson, Dark Matter, and Quantum Gravity Scales

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arxiv 0902.2600 v3 pith:OUTBG5RR submitted 2009-02-16 physics.gen-ph

classification physics.gen-ph
keywords electronconstraintbosonconstantcosmologicaldarkgravityhiggs
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We suggest discovery targets for the Higgs boson, dark matter, and quantum gravity mass scales, motivated by the Dirac equation for the electron in deSitter space, and a sixth-order constraint between the electron QED parameters and the cosmological constant. We go on to show that this constraint can be viewed as a structural parameter of the electron, and leads naturally to a new cosmic horizon. A dual fourth-order constraint implies a second-order one, from which the electron neutrino mass is derived.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Seesaw relation between the cosmological constant and the Higgs mass

    gr-qc 2024-12 reject novelty 3.0 of 10

    The paper suggests the Higgs mass is the geometric mean of the dark energy scale and the inflation scale, but the relation is fitted rather than independently derived.

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