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Solitonic Model of the Electron, Proton, and Neutron

机译:电子,质子和中子的孤子模型

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In the present work, the electron, proton, and neutron are considered to have spherical geometries, inside which monochromatic electromagnetic waves spread along parallels. Along each parallel, exactly half of the characteristic wavelength for the proton and electron, and exactly one wavelength for the neutron, is kept within the spherical shell. The result is a rotating soliton. This is possible due to the strictly-defined dispersion and anisotropy of the particles. The electric field has only a radial component; the magnetic field, a meridional component. By solving for the appropriate boundary conditions, functions defining the distribution of the electromagnetic field inside the particles and on their surfaces were obtained. Integrating the distribution functions for the electromagnetic field through the volumes of the particles leads to a system of algebraic equations, the solution of which gives all the basic parameters of particles: charge, rest energy, mass, radius, magnetic moment, and spin.
机译:在当前的工作中,电子,质子和中子被认为具有球形几何形状,在其中内部单色电磁波沿平行方向传播。沿着每条平行线,质子和电子的特征波长恰好一半,中子的特征波长恰好一个,被保留在球壳内。结果是旋转孤子。由于颗粒的严格定义的分散性和各向异性,这是可能的。电场只有径向分量;磁场,子午线分量。通过求解适当的边界条件,获得了定义粒子内部及其表面上电磁场分布的函数。通过粒子的体积对电磁场的分布函数进行积分,得出一个代数方程组,该方程组的解给出了粒子的所有基本参数:电荷,静能量,质量,半径,磁矩和自旋。

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