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THE NEUTRON MODEL

机译:中子模型

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摘要

In a presence of magnetic force, the orbiting electron is found to come to a closer equilibrium state that is different from the ground state predicted by Bohr model. This distance equals to the known classical (electromagnetic) radius of the electron. This is realized when hydrogen atom is under high compression. This is achievable due to gravity supporting stars. Under this situation the gravitational and electromagnetic forces are of the same orders of magnitude. This bound minimum state is modeled for the neutron. The magnetic field resulting from the orbital motion of the electron in this minimum state is 6.06 x 10~11T. This explains the origin of the magnetic field in the neutron star.
机译:在存在磁力的情况下,发现轨道电子达到了更接近的平衡状态,该平衡状态不同于玻尔模型预测的基态。该距离等于电子的已知经典(电磁)半径。当氢原子处于高压缩状态时,可以实现这一点。由于有重力支撑星,这是可以实现的。在这种情况下,重力和电磁力的大小相同。该绑定的最小状态是为中子建模的。在此最小状态下,由电子的轨道运动产生的磁场为6.06 x 10〜11T。这解释了中子星中磁场的起源。

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