Asymmetry in the gauge field and the gluon mass problem

In quantum field theory, scientists generally assume that the forces within the field are symmetrical, leading to conservation laws such as conservation of electric charge and conservation of parity.

However, the view that gauge symmetry is absolute symmetry leads to several problems for quantum field theory, specifically as follows:

- Electromagnetic symmetry leads to the inability to explain why electric monopoles exist without magnetic monopoles.

- Weak electrical symmetry requires an external field, the Higgs field, to break the symmetry.

- Color symmetry leads to an inexplicable lack of gluon mass and color confinement.

In book "The Universe is a Unified Object," author Ngo Quang Ha discovered that gauge symmetry is not perfectly symmetrical.

The author reconstructed the geometric model of the fields to match experimental results and solved all the asymmetry problems in the fields.

This includes providing a formula for the mass of Gluon while ensuring proper symmetry and optimal function, and preserving color and electrical charge.

The book (in English) is available on Amazon: https://www.amazon.com/dp/B0HCGYPFK1

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