Abstract:β decay is one of the most fundamental and thoroughly studied nuclear decay. Surprisingly, the β decay rates were found to have a periodic time variability [1]. However, others argued that there is no evidence for such cyclic deviation from the exponential first order kinetics decay law [2]. Here we propose that the β decay is a pseudo-first order exchange reaction triggered by uddu exotic mesons and propose a QCD gas theory. In analogy to the atmospheric gas density, the proposed QCD gas density drops wit… Show more
“…We propose that the QCD vacuum pion tetrahedron condensate [9] density in space is non-uniform and should drop in the KBC giant voids in analogy to earth's atmospheric density drop [10]. We propose to calculate the gravitation acceleration from the non-uniform pion tetrahedron condensate density variation.…”
“…In a previous paper [9] we assumed that the QCD vacuum pion tetrahedron condensate drops like the atmospheric density due to gravity as shown in the Figure 1 on the left-hand side. We proposed that similar to the gas kinetic theory, the pressure difference on a virtual box top and bottom surfaces that contains an infitisimal volume of the pion tetrahedron condensate is due to the difference in the number of collisions at the top and the bottom surfaces due to the non-uniform pion tetrahedron condensate density induced for example by a massive stars, where M is the star mass, r is the distance from the star, and ρ is the pion tetrahedron condensate density.…”
“…In previous papers we proposed that the hadron quarks perform quark exchange reactions with the pion tetrahedrons [9] [10] [17] [18] [19] [20]. The pion tetrahedrons may also collide with each other like in kinetic gas theory and exchange gluons as shown in Figure 2 below.…”
We propose that the QCD vacuum pion tetrahedron condensate density vary in space and drops to extremely low values in the Kennan, Barger and Cowie (KBC) void in analogy to earth's atmospheric density drop with elevation from earth. We propose a formula for the gravitation acceleration based on the non-uniform pion tetrahedron condensate. Gravity may be due to the underlying microscopic attraction between quarks and antiquarks, which are part of the vacuum pion tetrahedron condensate. We propose an electron tetrahedron model, where electrons are comprised of tetraquark tetrahedrons, dudd and duuu . The du quarks determine the negative electron charge and the dd or uu quarks determine the electron two spin states. The electron tetrahedron may perform a high frequency quark exchange reactions with the pion tetrahedron condensate by tunneling through the condensation gap creating a delocalized electron cloud with a fixed spin. The pion tetrahedron may act as a QCD glue bonding electron pairs in atoms and molecules and protons to neutrons in the nuclei. Conservation of valence quarks and antiquarks is proposed.
“…We propose that the QCD vacuum pion tetrahedron condensate [9] density in space is non-uniform and should drop in the KBC giant voids in analogy to earth's atmospheric density drop [10]. We propose to calculate the gravitation acceleration from the non-uniform pion tetrahedron condensate density variation.…”
“…In a previous paper [9] we assumed that the QCD vacuum pion tetrahedron condensate drops like the atmospheric density due to gravity as shown in the Figure 1 on the left-hand side. We proposed that similar to the gas kinetic theory, the pressure difference on a virtual box top and bottom surfaces that contains an infitisimal volume of the pion tetrahedron condensate is due to the difference in the number of collisions at the top and the bottom surfaces due to the non-uniform pion tetrahedron condensate density induced for example by a massive stars, where M is the star mass, r is the distance from the star, and ρ is the pion tetrahedron condensate density.…”
“…In previous papers we proposed that the hadron quarks perform quark exchange reactions with the pion tetrahedrons [9] [10] [17] [18] [19] [20]. The pion tetrahedrons may also collide with each other like in kinetic gas theory and exchange gluons as shown in Figure 2 below.…”
We propose that the QCD vacuum pion tetrahedron condensate density vary in space and drops to extremely low values in the Kennan, Barger and Cowie (KBC) void in analogy to earth's atmospheric density drop with elevation from earth. We propose a formula for the gravitation acceleration based on the non-uniform pion tetrahedron condensate. Gravity may be due to the underlying microscopic attraction between quarks and antiquarks, which are part of the vacuum pion tetrahedron condensate. We propose an electron tetrahedron model, where electrons are comprised of tetraquark tetrahedrons, dudd and duuu . The du quarks determine the negative electron charge and the dd or uu quarks determine the electron two spin states. The electron tetrahedron may perform a high frequency quark exchange reactions with the pion tetrahedron condensate by tunneling through the condensation gap creating a delocalized electron cloud with a fixed spin. The pion tetrahedron may act as a QCD glue bonding electron pairs in atoms and molecules and protons to neutrons in the nuclei. Conservation of valence quarks and antiquarks is proposed.
“…In previous papers [9] [10] [11], we suggested that antimatter plays a principal role in the universe and that antimatter is inseparable from both matter and space. We suggested that a QCD gas comprised of even number of quarks and antiquarks, the uddu tetraquark, fill space and perform quarks and antiquarks pair exchange reactions with matter particles.…”
Section: Big Bang and Quasi-steady-state Cosmologymentioning
confidence: 99%
“…Here, we propose that the B2W hole quantum tunneling transition may be accelerated crossing the reaction energy barrier by the antimatter trapped in the Journal of High Energy Physics, Gravitation and Cosmology BH ergoregions [9] that act as a detonator releasing a huge amount of mass and heat in the explosion and a BH spray.…”
Section: Black Hole Spray and The Cosmic Webmentioning
We propose that the trapped antimatter in super massive black hole ergoregions acts as detonators that triggers black hole to white hole transitions creating huge BHs explosions that generate BH spray that acts as seeds for new galaxies creation. We propose that by mapping and simulating the cosmic web structure, it may be possible to learn if the universe was created in a single big bang that started a single chain of BH explosions mini-creation event cycles, or alternatively, the BH explosions mini-creation event cycles are uncorrelated spacelike events, and the universe had no single primeval atom beginning.
We propose that the exotic meson tetraquark ud u d introduced in previous papers, may be a pseudo-Goldstone boson having a tetrahedron geometry and symmetry. The transition from the neutral pion superposition of two free
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