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Light

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Scientific Theory
NameLight
TypePhysical phenomenon and its disputed nature
Author(s)Nature disputed — see the researchers listed below
Keywordslight, photon, wave–particle duality, luminic motion, aether, speed of light, Particle Model

Light is the most contested phenomenon in physics. Everyone agrees on what light does — it propagates, refracts, diffracts, interferes, carries energy in discrete amounts, and travels at a definite speed. What no one has satisfactorily explained is what light is.

Orthodox physics answers with wave–particle duality: light behaves as a wave in some experiments and as a particle in others, and this is declared a fundamental feature of nature rather than a defect in the account. The critical tradition documented on this wiki treats that answer as an evasion. A duality is not an explanation but a contradiction given a name — and the persistence of the contradiction for over a century is read here as evidence that the underlying model is wrong, not that nature is inscrutable.

Accordingly this wiki catalogues a substantial literature offering physically intelligible models of light: accounts in which light is something definite, made of something, moving in a describable way.

The orthodox account

In the standard treatment light is an electromagnetic wave in Maxwell's theory, and simultaneously a stream of quanta — photons — carrying energy E = . Quantum electrodynamics computes the outcomes of experiments to extraordinary precision. But QED is explicitly a calculational formalism, not a picture: it declines to say what a photon is between emission and detection, and treats the question as improper. Critics observe that a theory which forbids the question has not answered it.

The particle solutions

Robert de Hilster: luminic motion

Luminic motion. In Robert de Hilster's model, light consists of successive groups of particles travelling together at c — the wave is the pattern of the groups, not an oscillation of a medium. One of the four universal motions.

In 2015, while trying to describe light waves in terms of particles, the engineer Robert de Hilster proposed a direct resolution of the duality. Light, on his account, is made of waves of particles — successive groups of real particles travelling together at the speed of light, "like successive waves of bombers."

The proposal is attractive because of what it explains without extra assumptions:

  • Frequency is the rate at which the groups arrive — a genuine periodicity, requiring no oscillating medium and no field.
  • Intensity is the number of particles in each group. This is the point conventional wave models handle awkwardly and pure photon-counting models handle only statistically; here both properties fall out of one picture, because a group of particles has both a spacing and a population.

There is thus no duality to reconcile: light is particles, and the wave is the pattern in which the particles travel. De Hilster named this luminic motion, and it became one of the four universal motions he and his son David de Hilster set out in Principia Mathematica 2 and The Four Universal Motions in Physics. It forms part of the wider Particle Model developed by the two, in which light, gravity and matter are all built from real sub-atomic particles. See also his Light, Gravity, and Mass: A Particle Theory (2015).

Other corpuscular accounts

Photon structure models

A second family of work accepts the photon but insists it must have structure — that a particle carrying frequency, polarization and angular momentum cannot be a dimensionless point:

Neither wave nor particle

Some researchers reject both horns of the dilemma. Bill Gaede argues in Light: Neither Particle nor Transverse Wave that light is neither a discrete corpuscle nor a transverse oscillation, and that the standard alternatives are both artefacts of an inadequate mechanical vocabulary.

Others seek a genuine synthesis rather than a choice: Robert E French presents one in Wave Particle Unity and a Physically Realist Interpretation of Light, and Rati Ram Sharma in A New Light on the Nature of Light. Wave and Particle Theory of Light applied to the Photoelectric Effect tests such a unified reading against the experiment usually held to settle the matter in favour of particles.

Propagation and the speed of light

If light is a real thing moving through a real medium, its speed should behave like the speed of anything else — and much work here disputes the claim that it is invariant for all observers:

This work connects directly to the wider critique of special relativity, whose second postulate is precisely the constancy of c, and to the aether tradition, in which light propagates through a medium that supplies a preferred frame. See also Sagnac Effect and GPS, where the one-way behaviour of light signals is measured directly.

The common thread

The models above disagree sharply with one another — particles, structured photons, neither, both. What unites them is the conviction that "it is both and you may not ask further" is not an answer, and that a phenomenon as ordinary as light ought to admit of a picture a person can hold in mind. That demand for intelligibility, rather than any single model, is what this body of work has in common.

Further material is indexed under Category:Light and Category:Aether.

See also