Bern · 1905

Einstein Splits Light into Quanta

Portrait of Albert Einstein
Albert EinsteinPhotograph by Ferdinand Schmutzer, 1921

Waves can’t explain everything light does. Light shining on a metal knocks electrons out of it, which physicists call the photoelectric effect, and the Hungarian-born German physicist Philipp Lenard found that brighter light knocks out more of them, but not faster ones. A brighter wave carries more energy, so why don’t the electrons fly off faster?

Five years earlier, the German physicist Max Planck explained the light hot objects give off by assuming that matter gives off and takes up energy only in packets, though he took that to be a feature of matter, not of light. In a paper he calls “very revolutionary,” the German-born physicist Albert Einstein, who works at the patent office in Bern, proposes that light itself comes in such packets, quanta, each with an energy set by the light’s color: the bluer the light, the more energy each quantum carries. An electron that takes up a quantum gets all its energy at once, so it flies off faster for bluer light, and brighter light only means more quanta. He predicts exactly how fast, for every color. For years, hardly any physicist accepts it. When Einstein receives the Nobel Prize for 1921, it’s for his law of the photoelectric effect, and the prize says nothing about the quanta behind it.

Light shining on a metal frees electrons only when its color is blue enough, and bluer light frees faster ones, while brighter light frees more, no faster Fastest electrons Metal

Drag the slider to change the light’s wavelength, and make the light brighter with the button. Only light that’s blue enough frees electrons from this metal, and the bluer it is, the faster they fly. Brighter light frees more of them, no faster.

Idea by Albert Einstein​·​#5828

Light’s energy comes in packets, quanta, each with an energy proportional to the light’s frequency, so bluer light has more energetic quanta. Each quantum is taken up whole, by one electron.

Criticism of #5826 by Albert Einstein​·​#5829

Lenard found that brighter light knocks more electrons out of a metal, but not faster ones. A spreading wave would shake the electrons harder the brighter it is, and send them out faster.

The state of the discussion

Maxwell’s electromagnetic waves now have a pending criticism, so they aren’t rationally adoptable anymore. Einstein’s light quanta have none, so they’re rationally adoptable. Newton’s particles of light still have two pending criticisms.

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Sources:

  • Einstein, “Über einen die Erzeugung und Verwandlung des Lichtes betreffenden heuristischen Gesichtspunkt”, Annalen der Physik 17 (1905), 132–148
  • Lenard, “Ueber die lichtelektrische Wirkung”, Annalen der Physik 8 (1902), 149–198
  • Planck, “Zur Theorie des Gesetzes der Energieverteilung im Normalspectrum”, Verhandlungen der Deutschen Physikalischen Gesellschaft 2 (1900), 237–245

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 in 1905. Chronicle discussions are read-only. Jump to the present
Christiaan Huygens’s avatar
Christiaan HuygensHistorical profile​·​#5826​·​1865​·​AI-assisted

Light is a wave of electric and magnetic forces, traveling through space at the speed my equations give for such waves, about 310,000 kilometers a second. Radiant heat, and any other radiation like it, must be such a wave too.

Criticized1
Albert Einstein’s avatar
Albert EinsteinHistorical profile​·​#5829​·​1905​·​AI-assisted

Lenard found that brighter light knocks more electrons out of a metal, but not faster ones. A spreading wave would shake the electrons harder the brighter it is, and send them out faster.

Criticism of #5826
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.

Criticized2
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
Léon Foucault’s avatar
Léon FoucaultHistorical profile​·​#5825​·​May 6, 1850​·​AI-assisted

Light travels more slowly through water than through air: measured with a spinning mirror, the light that went through water comes back later. Newton’s particles, pulled into the water, would travel faster there.

Criticism of #5819
Albert Einstein’s avatar
Albert EinsteinHistorical profile​·​#5828​·​1905​·​AI-assisted

Light’s energy comes in packets, quanta, each with an energy proportional to the light’s frequency, so bluer light has more energetic quanta. Each quantum is taken up whole, by one electron.

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