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A Novelty Solution to the Neutron Anomaly (An Anomalous Neutron or “Dark”?)
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作者 Giovanni Guido Abele Bianchi 《Journal of High Energy Physics, Gravitation and Cosmology》 CAS 2023年第1期353-378,共26页
To explain the anomaly (τ<sub>b</sub> ≠ τ<sub>f</sub>) of the neutron lifetime τ in some experiments, in “bottle” τ<sub>b</sub> and in “beam” τ<sub>f</sub>, we... To explain the anomaly (τ<sub>b</sub> ≠ τ<sub>f</sub>) of the neutron lifetime τ in some experiments, in “bottle” τ<sub>b</sub> and in “beam” τ<sub>f</sub>, we resort to an anomalous form of the neutron n<sub>a</sub>. This form belongs to one of two different states of the structure of the quark configurations making up the neutron (nucleon): first, an ordinary form Ψ<sub>o</sub>, while the second is an “anomalous” form Ψ<sub>a</sub>, difficult to detect and decay. If the ordinary configuration is present in everyone nuclear processes, to strong and weak interactions, and in diffusion processes, the anomalous form can emerge, in casual way and probabilistic, in some processes of fusion with production of neutrons and can be highlighted in some experiments as those in “bottle” and in “beam”, see the anomaly of the neutron lifetime. We show that the anomalous form Ψ<sub>a</sub> can be highlighted in the coupling between a dipoles’ lattice of virtual bosons W and the neutron (nucleon) because the neutron into anomalous configuration does not decays. Finally, we interpret the anomalous neutron as a “dark” neutron, presenting, so, the dark matter as an anomalous form of hadron matter. 展开更多
关键词 ANOMALY Anomalous Neutron Dark Neutron Geometric Structure Discrepancy bosons lattice Weak Decay
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Solitary Excitations of Dipolar Bosons in Optical Lattice under Magnetic Fields
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作者 WANG Shi-En 《Communications in Theoretical Physics》 SCIE CAS CSCD 2006年第2X期233-238,共6页
We obtain the multisolitary solutions of the extended Bose-Hubbard model which describes dipolar Bose- Einstein condensates in optical lattices under time-dependent magnetic fields, and indicate that the nonlinearity ... We obtain the multisolitary solutions of the extended Bose-Hubbard model which describes dipolar Bose- Einstein condensates in optical lattices under time-dependent magnetic fields, and indicate that the nonlinearity is due to both on-site short-range interactions and also (long-range) dipole-dipole interactions which can act between neighboring sites. The discrete breathers as nonlinear excitations are always oscillatory in time and can also be spatially localized, while the oscillatory frequencies are determined by an external field. We show that these excitations will be observable and discuss how the parameters can be tuned in future experiments. 展开更多
关键词 solitary excitation extended Bose-Hubbard model bosons optical lattice
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Quantum Tunneling of Two-Species Cold Bosonic Atoms in Optical Lattices
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作者 YU Zhao-Xian LIU Pu-Ping JIAO Zhi-Yong 《Communications in Theoretical Physics》 SCIE CAS CSCD 2008年第7期95-96,共2页
In this letter,we have studied quantum tunneling of two-species cold bosonic atoms in an optical lattices.When the optical lattice is not infinitely long and the spin excitations are not in the long-wavelength limit,q... In this letter,we have studied quantum tunneling of two-species cold bosonic atoms in an optical lattices.When the optical lattice is not infinitely long and the spin excitations are not in the long-wavelength limit,quantumtunnelings are presented. 展开更多
关键词 quantum tunneling cold bosonic atom optical lattice
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The QCD Ground State Chiral Tetrahedron Symmetry
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作者 Rami Rom 《Journal of High Energy Physics, Gravitation and Cosmology》 2023年第4期1161-1180,共20页
We propose that the exotic meson tetraquark u<sub>d</sub>~</sup>d&utilde;introduced in previous papers, may be a pseudo-Goldstone boson having a tetrahedron geometry and symmetry. The transition ... We propose that the exotic meson tetraquark u<sub>d</sub>~</sup>d&utilde;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 mesons, d<sub>d</sub>~</sup> and u&utilde;, to the tetrahedron geometry with optional two chiral states may be the symmetry breaking of the QCD ground state. The u<sub>d</sub>~</sup>d&utilde;tetrahedron mass may be calculated by measuring the β decay rate variability. We assume that electrons and positrons are composite particle exotic tetraquarks, d&utilde;d<sub>d</sub>~</sup> for the electrons and u<sub>d</sub>~</sup>d<sub>d</sub>~</sup> for the positrons and confined by the strong force. We propose that the QCD tetrahedrons play a central role in electron pairing mechanism in both chemical bond forming and superconductor Cooper pairs. We propose a hypothesis where the QCD ground state tetrahedrons play a central role in low energy physics where quark exchange reactions between particles and the QCD tetrahedrons via gluon junctions transfer all the forces. The QCD ground state u<sub>d</sub>~</sup>d&utilde;tetrahedrons hypothesis provides a symmetry breaking and a mass gap may be created by the ground state QCD tetrahedrons Bose-Einstein condensate. 展开更多
关键词 QCD Vacuum Pseudo-Goldstone boson Bose Einstein Condensate (BEC) lattice QCD Gluon Junctions Tetrahedrons Cooper Pairs Isotope Effect Superconductor Dirac Equation Klein Paradox Cosmic Web Voids Doppler Redshift Black Hole Laser
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