F(750), We Miss You, as Bound State of 6 Top and 6 Anti top
arXiv:1610.00364 · doi:10.1142/S0217751X16501864
Abstract
We collect and estimate support for our long speculated "multiple point principle" saying that there should be several vacua all having (compared to the scales of high energy physics) very low energy densities. In pure Standard Model we suggest there being three by "multiple point principle" low energy density vacua, "present", "condensate" and "high field" vacuum. We fit the mass of the in our picture since long speculated bound state of six top and six anti top quarks in three quite {\em independent ways} and get remarkably within our crude accuracy the {\em same} mass in all three fits! The new point of the present article is to estimate the bound state mass in what we could call a bag model estimation. The two other fits, which we review, obtain the mass of the bound state by fitting to the multiple point principle prediction of degenerate vacua. Our remarkable agreement of our three mass-fits can be interpreted to mean, that we have calculated at the end the energy densities of the two extra speculated vacua and found that they are indeed very small!. Unfortunately the recently much discussed statistical fluctuation peak F(750) has now been revealed to be just a fluctuation, very accidentally matches our fitted mass of the bound state remarkably well with the mass of this fluctuation 750 GeV.
minor corrections in calculation and commas and a few references added. arXiv admin note: text overlap with arXiv:1607.07907, adding few citations
References in corpus (19)
- The Standard Model Higgs boson as the inflaton
- Combined Measurement of the Higgs Boson Mass in Collisions at and 8 TeV with the ATLAS and CMS Experiments
- Combined results of searches for the standard model Higgs boson in pp collisions at sqrt(s) = 7 TeV
- Combined search for the Standard Model Higgs boson using up to 4.9 fb-1 of pp collision data at sqrt(s) = 7 TeV with the ATLAS detector at the LHC
- Cosmological implications of the Higgs mass measurement
- The Probable Fate of the Standard Model
- The lifetime of the electroweak vacuum and sensitivity to Planck scale physics
- Why should we care about the top quark Yukawa coupling?
- Top mass determination, Higgs inflation, and vacuum stability
- Evidence of the Big Fix
- Multiple Point Principle of the Standard Model with Scalar Singlet Dark Matter and Right Handed Neutrinos
- Remarkable coincidence for the top Yukawa coupling and an approximately massless bound state
- About the stability of the dodecatoplet
- On bound states of multiple t-quarks due to Higgs exchange
- Multi-fermion states for heavy fermions bound via Higgs exchange
- Cosmological constant in SUGRA models with Planck scale SUSY breaking and degenerate vacua
- Tunguska Dark Matter Ball
- Diphoton decay of the Higgs boson and new bound states of top and anti-top quarks
- Simple Mass Estimate for Resonance(s) being 6 Top plus 6 Anti top Bound states and Combinations thereof