The reality of Quantum Fields

Is it possible to define the physical “reality” of a Quantum field? We think so. Many including Albert Einstein and Erin Schrödinger, had difficulty accepting the “reality” of quantum mechanics because many of its concepts appear to contradict those of our observable universe. For example in a quantum system Schrödinger’s wave equation defines the field … Read more

Faraday’s fields in four *spatial* dimensions

The concept of a field was developed when physicists learned that they could simplify the calculations of the forces involved in planetary motion by assuming or imagining the existence of a continuous gravitational field. They defined this field in such a way that if another planet were put at any point in that field the … Read more

Finally, someone found a physical link between the graviton and the photon

Presently the Standard Model of Particle Physics links the quantum properties of the Gravitron with electromagnetism through mathematics  However, for the past 50 years brightest minds in the scientist community have been unable to observe the Gravitron or the particle it assumes it responsible for the force of gravity. Some say this is because it … Read more

Compton scattering: A Classical approach

Compton scattering is a type of scattering that X-rays and gamma rays undergo in matter.  The inelastic scattering of photons in matter results in a decrease in energy (increase in wavelength) of an X-ray or gamma ray photon, called the Compton Effect.  Part of the energy of the X/gamma ray is transferred to a scattering … Read more