On the Non Existence of Magnetic Charge
Classical electromagnetic theory has long assumed based on mathematical formal symmetry that electric charge and magnetic charge are two equivalent fundamental field sources in the universe, and researchers have spent a long time searching for magnetic monopoles. This paper puts forward a subversive fundamental conclusion. It is not merely that magnetic monopoles cannot exist independently. Magnetic charge fundamentally does not exist at the origin level of the universe. Electric charge is a primary entity formed by gamma photons after strong self locking disturbing space, and it serves as a real fundamental physical source. All magnetic phenomena including magnetic field, magnetic force, north south polarity of magnetic pole and magnetic response effect are pure emergent apparent effects generated by the collective superposition of columnar concentric vortex magnetic fields produced by the motion of charged particles. Magnetism has no independent origin, no independent particle and no independent field source. The so called magnetic charge signals observed in magnetization of permanent magnets, conventional electromagnetic induction, ultracold atomic systems and spin ice crystals at extremely low temperature can all be explained by moving electric charge. The monopole like magnetic signals observed in various low temperature experiments are only equivalent magnetic field illusions formed by ordered motion and arrangement of electric charge and electron spin, instead of detected real magnetic charge. The electromagnetic system is fundamentally asymmetric. Electricity is the origin while magnetism is derivative. This conclusion completely ends the century old physical conjecture about magnetic charge and magnetic monopole from the root.
Authors
- Jiaqing Yan
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-10-04
- DOI
- https://doi.org/10.5281/zenodo.23137913
- Primary Topic
- Quantum and Classical Electrodynamics
- Type
- preprint