Nov 1, 2009

Rishon model of elementary particles

Rishon model of elementary particles It was suggested that quarks and leptons of the most fundamental particles called Rishon. T Rishon can define as follows: mass and charge e / 3 V Rishon is neutral and has little or no mass. The Rishon have spin 1 / 2, color free, and are combined in triplets or Rishon-antirishon couples. Thus the electron is a TTT, VVV neutrino, the definition of TVV Quark and Quark to TTV. If T is a little 'more than the color charge V, after the curd has a color of the T. The Quark antiup TTV seems a distinct lack of color, V, or equivalent, a surplus of anti-color, and act as anti-particles. Thus, the TTV is an excess of color and behave like a particle, in agreement with the observation. The leptons have no net color. There is no need for hyper-color. All interactions of particles formed by rearrangements of Rishon or the creation or destruction of Rishon-antirishon couples. For example, beta decay occurs when a quark, after the change to a quark, emitting an electron and a neutrino: TVV -> TTV + + TTT VVV The massless particles was originally conceived as a neutrino, was then defined as an anti-neutrino. This model favors the first choice. If the link between Rishon is much larger than the bond between the quarks and leptons, quarks and leptons could connect with their identity, how can atoms molecules. Lepton is preserved even when the VVV is a negative number lepton. The second and third generation of electrons and the quarks can be done by adding one or two pairs of the first generation TT. The second and third generation of neutrinos could be done by adding one or two pairs of the first VV generation. The binding of Rishon is apparently so great that the individual wave functions Rishon? Traps? together in a single round, in this case there is no inteal structure. The actual mass of TTV is almost equal to that of the TVV, which means that the TT-bond binding energy is almost equal to the mass of a bare T. The electron has three T, and three titles, and should, therefore, only little compared to the quark mass, as noted. The muon is replaced by most of its mass due to the additional TT and a mass comparable to that of a quark, he noted. Boson, the carrier of the weak force, probably from Rishon necessary to ensure the decay of the products. The photons can come from a colorless VV pair, for example, red-antired. The gluon can be a colorful VV pair, for example anti-red-blue. Therefore, the weak force can be simply the color of the weak force bosons, the electromagnetic force is the color, the effect of photons, and the force is the color, the strength of gluons, mesons, quarks, and possibly other hadrons. A TT would destroy real, while a virtual pair may help the strong force. A Bare Rishon, TV, TV, TT or VV is less and the color, such as quarks, can not be considered in isolation. The proton comprises two up quarks and one down quark, so that the hydrogen atom has four T, T four, two and two V V. If this is typical of the whole universe, then there are a lot of Rishon and antirishons. It might be expected also that the emission and absorption of virtual particles is Hawking radiation. The space-time itself could be a Rishon quantum states. The big one spin Rishon, the spherically symmetric S-states, composed of three members with P-extended the time to coordinate, and three P-coordinate with states, time is compressed. These can be identified with the three colors and three anti-colors. The difference in time coordinate would be a slight difference in the reaction of Rishon antirishons and to explain why the hydrogen in large quantities as anti-hydrogen. Another possibility is that the Rishon antirishons and have opposite handedness and parity violation caused a difference in response rates. The same can only Rishon quantum space-time. Rishon Le V could be the lowest level of P and T P Rishon next-highest state. Therefore, the T and V would be similar, but slightly wrong, as has been mentioned. If this type of model is correct, it would be the basis for long-unified field theory sought. The strong, weak and electromagnetic forces are only the power of color, intermediate products, color and strength that can be used in quantum gravity, normal gravity, the limit of long-haul. Reference Haim Harari, "The structure of quarks and leptons," Scientific American, p. 56, April 1983.

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