2013
DOI: 10.4236/jmp.2013.44a004
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The Higgs Boson in the Periodic System of Elementary Particles

Abstract:

It is proposed that the observed Higgs Boson at the LHC is the Standard Model Higgs boson that adopts the existence of the hidden lepton condensate. The hidden lepton is in the forbidden lepton family, outside of the three lepton families of the Standard Model. Being forbidden, a single hidden lepton cannot exist alone;… Show more

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Cited by 12 publications
(12 citation statements)
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“…From the periodic table of elementary particles, the theoretical calculated mass of the Higgs boson is 128.8 GeV in good agreements with the observed 125 or 126 GeV [12]. In terms of mathematical expression, the conventional permanent Higgs field model and the posited transitional Higgs field model are identical.…”
Section: Digital Space Structuresupporting
confidence: 68%
See 1 more Smart Citation
“…From the periodic table of elementary particles, the theoretical calculated mass of the Higgs boson is 128.8 GeV in good agreements with the observed 125 or 126 GeV [12]. In terms of mathematical expression, the conventional permanent Higgs field model and the posited transitional Higgs field model are identical.…”
Section: Digital Space Structuresupporting
confidence: 68%
“…For example, in the QVSL transformation, a particle with 10D4d is transformed to a particle with 4D10d from Equation (1f). Calculated from Equation (1e), the rest mass of 4D10d is 1/α 12 ≈ 137 12 times of the mass of 10D4d. In terms of rest mass, 10D space-time has 4d with the lowest rest mass, and 4D space-time has 10d with the highest rest mass.…”
Section: The Mathematical Computation Componentmentioning
confidence: 99%
“…The 4d core attachment space surrounded by 6 types of many (j) 4D4d quantized units corresponds to the core particle surrounded by 6 types of many small 4d particles, which constitute gauge force fields in "dimensional orbitals" [15]. The dimensional orbitals of baryonic matter provide the base for the periodic table of elementary particles to calculate accurately the masses of all 4D elementary particles, including quarks, leptons, gauge bosons, and the Higgs boson [8].…”
Section: Cosmologymentioning
confidence: 99%
“…Returning of energy from the Higgs scalar boson to the particles is through the absorption of the Higgs scalar boson by the particles. When a massless particle in the electroweak interaction absorbs the Higgs scalar boson, the Higgs scalar boson becomes the longitudinal component of the massless particle, resulting in the massive particle and the disappearance of the Higgs scalar boson" [31]. According to [31] "The observed Higgs boson at the LHC is a remnant of the Higgs boson.…”
Section: Concept Of Photon Statusmentioning
confidence: 99%
“…When a massless particle in the electroweak interaction absorbs the Higgs scalar boson, the Higgs scalar boson becomes the longitudinal component of the massless particle, resulting in the massive particle and the disappearance of the Higgs scalar boson" [31]. According to [31] "The observed Higgs boson at the LHC is a remnant of the Higgs boson. At the beginning of the universe, all particles in the electroweak interaction were massless.…”
Section: Concept Of Photon Statusmentioning
confidence: 99%