Nuclear and Atomic Physics

2609 Submissions

[3] viXra:2609.0085 [pdf] submitted on 2026-09-27 21:56:32

Examination of Dualism of Electromagnetic Radiations Under Different Perspectives: Mechanism of Low and High Temperature Superconductivity

Authors: Bijon Kumar Sen
Comments: 19 Pages. 6 Figures

Of the three different types of dualism viz., wave-particle, mass-energy and matter-wave of de Broglie, the mass-energy dualism in which the rest mass showing conversion to mechanical energy is dependent on the velocity of the particle. The other two i.e., wave-particle and matter-wave have identical basis for the dual exposition of property. The fundamental property which causes the dualism in them arises from two components. These are exhibited in different perspectives by the study of electromagnetic wave — one guided by wave and the other by quantum mechanics. They are independent but supplementary to each other. This connects Astrophysics, Astronomy, Nuclear Physics, Atomic Physics, Special Theory of Relativity, Gravitation and Gravity, Quantum Theory of Gravity etc. with apparently diverse and contradictory properties. The result shows correct interpretation of neutron-proton conversion in the nucleus through d- and u- quark exchange and is the source of perpetuity in magnetic forces. Mechanism of low and high temperature superconductivity has been examined that led to the explanation of the mystery of Bermuda Triangle. Keywords: Basis of wave-particle duality, Real source of exchange energy, Source of perpetuity of magnetic forces, Mechanism of low and high temperature superconductivity
Category: Nuclear and Atomic Physics

[2] viXra:2609.0065 [pdf] submitted on 2026-09-23 09:30:42

L-Quark Model: G-L Integer-Charge Coupling System and Baryon Charge Conservation Laws under Weak Interaction

Authors: Naili Cui
Comments: 9 Pages.

This paper constructs the G-L integer-charge microstructure system and defines the G fundamental particle as the underlying fermionic unit of cosmic matter. Secondary composite L-quark structures are formed by the coupling of G fundamental particles. The standard L-quark configurations for proton and neutron are presented. The configuration evolution mechanisms for proton-neutron transformation in β^- decay, β^+ decay and electron capture are fully revealed. A self-consistent novel framework for hadron microstructure is established without ad-hoc assumptions. Based on the microscopic mechanism of the 1022 keV threshold in proton β^+ decay, the Cui Charge Symmetry Threshold Conservation Law for β^+ Decay under Weak Interaction (CZ Law) is derived. Observations from deep inelastic scattering experiments can be interpreted as regional average charge effects inside nucleons, which are highly consistent with the G-L integer-charge model. Based on the G-L model, it is predicted that the X(2370) resonance discovered by BESIII is a brand-new hadronic state formed by many-body direct condensation of G fundamental particles. It opens a new theoretical paradigm for hadron spectroscopy and glueball physics.
Category: Nuclear and Atomic Physics

[1] viXra:2609.0001 [pdf] submitted on 2026-09-02 11:37:02

Motion of Matter as Matter-Neutrino Induction

Authors: Aleksandr Nikitin
Comments: 4 Pages.

My theoretical developments of the new scientific paradigm lead to the conclusion that any movement of matter, including gravity and low-energy nuclear reactions (LENR), occur as matter-neutrino induction.Any fundamental prime mover (sail, water wheel, steam engine, internal combustion engine, gas turbine, jet engine, nuclear reactor, electric current generator) is a nuclear fusion generator.The motion of matter, i.e. any change, including gravitational, electromagnetic and low-energy nuclear reactions LENR, the description of which is the task of science, can be further cognized solely on the basis of a new scientific paradigm:
Category: Nuclear and Atomic Physics