跳至主要内容

Prediction and Derivation of the Higgs Boson from the Neutron and Properties of Hydrogen Demonstrating Relationships with Planck’s Time, the Down Quark, and the Fine Structure Constant

Read full paper at:
http://www.scirp.org/journal/PaperInformation.aspx?PaperID=51065#.VFMCZmfHRK0

A high accuracy Higgs boson, H0, is an important physical constant. The Higgs boson is associated with the property of mass related to broken symmetry in the Standard Model. The H0 mass cannot be derived by the Standard Model. The goal of this work is to derive and predict the mass of H0 from the subatomic data of the frequency equivalents of the neutron, electron, Bohr radius, and the ionization energy of hydrogen. H0’s close relationships to the fine structure constant, α, the down quark, and Planck time, tP are demonstrated. The methods of the harmonic neutron hypothesis introduced in 2009 were utilized. It assumes that the fundamental constants as frequency equivalents represent a classic unified harmonic system where each physical constant is associated with a classic harmonic integer fraction. It has been demonstrated that the sum exponent of a harmonic integer fraction, and a small derived linear δ value of the annhilation frequency of the neutron, vn, 2.2718591 × 1023 Hz, (vns) as a dimensionless coupling constant represent many physical constants as frequency equivalents. This is a natural unit system. The harmonic integer fraction series is 1/±n, and 1 ± 1/n for n equals 1 to ∞. The H0 is empirically and logically is associated with harmonic fractions, 1/11 and 1 + 1/11. α-1 is associated with 11. α-1 is a free space scaling constant for the electromagnetic force so it is logical that 11 should also have a pair, but for a free space mass constant. Also there should be a harmonic faction pair for the down quark, 1 - 1/11, just as there is pairing of the up quark, 1 - 1/10, and top quark, 1 + 1/10. The harmonic neutron hypothesis has published a method deriving a high accuracy Planck time, tP from the same limited subatomic data. The δ line for H0 should be closely associated with tP since they both are related to mass. The preferred derived value related to tP2 is 125.596808 GeV/c2. A less attractive derived value is 125.120961 GeV/c2 from the weak force factors only. The experimental CMS and Atlas value ranges are 125.03+0.26+0.13-0.27-0.15 and 125.36±0.37±0.18 GeV/c2. Empirically the H0 δ line is closely related to the same factors of the tP δ line, but with inverse sign of the slope. The H0 completes the paring of a free space constant for mass, the down quark, and an inverse sign δ line factors with tP. It is possible to accurately derive the mass of H0 from subatomic physical data. The model demonstrates that H0 is closely associated with α, the down quark, and tP. This prediction can be scrutinized in the future to see if it is accurate. The model has already published accurate predictions of the masses of the quarks.
Cite this paper
Chakeres, D. (2014) Prediction and Derivation of the Higgs Boson from the Neutron and Properties of Hydrogen Demonstrating Relationships with Planck’s Time, the Down Quark, and the Fine Structure Constant. Journal of Modern Physics, 5, 1670-1683. doi: 10.4236/jmp.2014.516167.

References


[1] Higgs, P.W, (1964) Physical Review Letters, 13, 508-509.
http://dx.doi.org/10.1103/PhysRevLett.13.508
[2] Iso, S. (2013) What Can We Learn from the 126 GeV Higgs Boson for the Planck Scale Physics Hierarchy Problem and the Stability of the Vacuum? arXiv:1304.0293
[3] Gherghetta, T., von Harling, B., Medina, A.D. and Schmidt, M.A. (2013) The Scale-Invariant NMSSM and the 126 GeV Higgs Boson. arXiv:1212.5243v2
[4] Carena, M., Beringer, J., et al., Particle Data Group (2012, 2013) Physical Review D, D86, Article ID: 010001. (2012 and 2013 Partial Update for the 2014 Edition).
[5] CMS Collaboration (2012) Physics Letters B, 716, 30-61. arXiv:1207.7235. Bibcode:2012PhLB..716...30C.
http://dx.doi.org/10.1016/j.physletb.2012.08.021
[6] ATLAS Collaboration (2012) Physics Letters B, 716, 1-29. arXiv:1207.7214. Bibcode:2012PhLB..716....1A.
http://dx.doi.org/10.1016/j.physletb.2012.08.020
[7] Chakeres, D.W. (2009) Particle Physics Insights, 2, 1-20.
[8] Chakeres, D.W. (2011) Particle Physics Insights, 4, 19-23.
http://dx.doi.org/10.4137/PPI.S7961
[9] Chakeres, D.W. (2011) Particle Physics Insights, 4, 25-31.
http://dx.doi.org/10.4137/PPI.S8241
[10] Chakeres, D.W. (2013) Particle Physics Insights, 6, 1-7.
http://dx.doi.org/10.4137/PPI.S12390
[11] Chakeres, D.W. (2011) Particle Physics Insights, 4, 33-38.
http://dx.doi.org/10.4137/PPI.S8269
[12] Chakeres, D.W. (2012) The Harmonic Neutron Hypothesis: Alpha and the Annihilation Frequency Equivalent of the Neutron Are Sufficient to Derive the Effective Fine Structure Constant at Z American Physical Society Poster.
[13] Chakeres, D.W. (2006) The Imaginary Number Neutron Symphony. US Copyright, TXu1-295-777.
[14] Lykken, J. and Spiropulu, M. (2014) Scientific American, 310, 34-39.
http://dx.doi.org/10.1038/scientificamerican0514-34      eww141104lx

评论

此博客中的热门博文

Does Immigration Promote the Investment of the Monopolistic Firm?

In the present paper, we examine the effect of increasing uncertainty of immigrants’ growth on the optimal timing of investment of a firm that has a monopolistic power over the labor market. It is revealed that when the uncertainty of immigrants’ growth is more than a threshold level, increasing uncertainty of immigrants’ growth accelerates the optimal timing of firms’ investment and enhances the economic growth, even if the uncertainty of immigrants’ growth is formulated by the geometric Brownian motion, which is in sharp contrast to the standard result that an increase in the uncertainty postpones the optimal timing. With an increase in the immigrants over the past ten years, workforces in the host countries have been growing significantly to the extent that the immigrants represent 70% of the increase in the workforce in Europe, and 47% in the United States as OECD indicates. In the present paper, we attempted to investigate the effect of increased uncertainty caused by the growi...

Education Policy Implementation: A Mechanism for Enhancing Primary Education Development in Zanzibar

Education is one of the fundamental rights of individuals; therefore, the government of a country needs to develop and strengthen educational policy and quality as well as to ensure that everyone has equal access to basic education. The improvement of access and quality of education in the world is becoming as an essential factor in development, whereas the basic education (primary school), is acknowledged as a foundation of the higher educational development for every country. To fulfill this goal, governments introduce several policies and procedures; however, it requires some reforms and participation from the politician, policymakers, and other stakeholders to re-examine educational policy so that it can lead to multiplication and betterment of the reforms. Educational reforms actually focus on accountability. A positive educational development and reform is very challenging and needs more effort and strategy on how to use and utilize the resources effectively as such it can achie...