Paris · March 15, 1819

A Bright Spot Where There Should Be Shadow

Portrait of Augustin Fresnel
Augustin FresnelEngraving after Ambroise Tardieu

A prediction meant to sink the wave theory saves it instead. The French Academy of Sciences offers a prize for the best account of how light bends around obstacles. The French engineer and physicist Augustin Fresnel, who builds roads for a living, enters a wave theory worked out in exact mathematics. Light’s waves are so short, he finds, that they bend only slightly into shadows, making the fine fringes seen along their edges.

Most of the judges favor particles. One of them, the French mathematician and physicist Siméon Denis Poisson, works out a consequence of Fresnel’s mathematics that seems absurd: in the shadow of a small round disk, there should be a bright spot, right at the center. Another judge, the French astronomer and physicist François Arago, tries it. The spot is there. Fresnel wins the prize on March 15. Two astronomers had seen the spot a century earlier, but nobody remembered.

Light passing a small round disk makes a shadow on a screen with a bright spot at its center, as bright as without the disk, where particles of light would leave the shadow dark Light Disk Screen The screen, face on Brightness across the screen: Fresnel’s waves Newton’s particles Not to scale
Drag the slider to move the screen. Light bending around the disk’s edge from all sides travels the same distance to the center of its shadow, so the waves arrive in step there and make a bright spot, as bright as without the disk. Particles would leave the shadow dark. The farther the screen, the wider the spot.

Counter-criticism of #5820 by Augustin Fresnel​·​#5822

Light does bend into shadows, only very slightly, because its waves are so short. That makes the fine fringes along the edge of a shadow, and my calculation of the waves predicts exactly where they fall.

Counter-criticism of #5822 by Siméon Denis Poisson​·​#5823

By Fresnel’s own calculation, the shadow of a small round disk would have a bright spot right at its center, as bright as if the disk weren’t there. That’s absurd.

Counter-criticism of #5823 by François Arago​·​#5824

I put a small round disk in a narrow beam of light, and the bright spot is there, at the center of its shadow, just as Fresnel’s theory says.

The state of the discussion

Arago answers Poisson, so Fresnel’s answer to Newton stands, and Huygens’s waves of light have no pending criticisms left: they’re rationally adoptable again. Newton’s particles of light still have one.

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Sources:

  • Fresnel, “Mémoire sur la diffraction de la lumière”, Mémoires de l’Académie royale des sciences 5 (1826), 339–475
  • Arago’s report in Annales de chimie et de physique 11 (1819)

Researched and written with the help of AI, from the sources named. AI can make mistakes. Veritula doesn’t claim perfect historical accuracy; the sources are there to check against.

The full discussion

Wave or Particle? How Light Outgrew Both

Dennis Hackethal started this discussion 1 day ago.

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Huygens said light is a wave, Newton that it’s a stream of particles. Both were wrong, and working out what light really is showed that our universe is one of many.


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The discussion as it was on March 15, 1819. Chronicle discussions are read-only. Jump to the present
Christiaan Huygens’s avatar
Christiaan HuygensHistorical profile​·​#5818​·​1690​·​AI-assisted

Light is a wave: a disturbance spreading through an invisible medium, the ether, as sound spreads through air. It travels more slowly in glass and water than in air, which is why its path bends as it enters them.

Isaac Newton’s avatar
Isaac NewtonHistorical profile​·​#5820​·​1706​·​AI-assisted

A wave would bend around an obstacle and spread into its shadow, as sound bends around a corner. But light casts sharp shadows.

Criticism of #5818Criticized1
Augustin Fresnel’s avatar
Augustin FresnelHistorical profile​·​#5822​·​March 15, 1819​·​AI-assisted

Light does bend into shadows, only very slightly, because its waves are so short. That makes the fine fringes along the edge of a shadow, and my calculation of the waves predicts exactly where they fall.

Criticism of #5820
Siméon Denis Poisson’s avatar
Siméon Denis PoissonHistorical profile​·​#5823​·​March 15, 1819​·​AI-assisted

By Fresnel’s own calculation, the shadow of a small round disk would have a bright spot right at its center, as bright as if the disk weren’t there. That’s absurd.

Criticism of #5822Criticized1
François Arago’s avatar
François AragoHistorical profile​·​#5824​·​March 15, 1819​·​AI-assisted

I put a small round disk in a narrow beam of light, and the bright spot is there, at the center of its shadow, just as Fresnel’s theory says.

Criticism of #5823
Isaac Newton’s avatar
Isaac NewtonHistorical profile​·​#5819​·​1706​·​AI-assisted

Light is a stream of tiny particles thrown off by shining things. They fly in straight lines, which is why shadows are sharp. Glass and water pull them in as they enter, which bends their path and speeds them up.

Criticized1
Thomas Young’s avatar
Thomas YoungHistorical profile​·​#5821​·​November 24, 1803​·​AI-assisted

Light added to light can make darkness. Hold a thin card in a narrow beam of light, and bright and dark stripes appear in its shadow; block the light passing one side of it, and they vanish. Waves can cancel each other out. Streams of particles can’t.

Criticism of #5819
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