Shadow bands explained

Shadow bands are thin, wavy lines of alternating light and dark that can be seen moving and undulating in parallel on plain-coloured surfaces immediately before and after a total solar eclipse.[1] They are caused by the refraction by Earth's atmospheric turbulence[2] of the solar crescent as it thins to a narrow slit, which increasingly collimates the light reaching Earth in the minute just before and after totality.[3] [4]

The shadows' detailed structure is due to random patterns of fine air turbulence that refract the collimated sunlight arriving from the narrow eclipse crescent.

The bands' rapid sliding motion is due to shifting air currents combined with the angular motion of the Sun projecting through higher altitudes. The degree of collimation in the light gradually increases as the crescent thins, until the solar disk is completely covered and the eclipse is total.

Stars twinkle for the same reason. All light passing through the Earth's atmosphere encounters tiny disturbances in temperature, pressure, and humidity. These disturbances change the air's refractive index, so that the light essentially passes through innumerable tiny prisms. Thus, the entire sky essentially "dances" randomly at the scale of the disturbances. However, they are so small that even the visible disk of planets (Venus, Jupiter, etc) are larger than the "dancing" scale, and so their brightness appears to remain steady. Only stars are visibly affected, because they are so far away that they are essentially pinpoints of light. This is why astronomers sometimes use the phrase, "stars twinkle, planets don't". Similarly, shadow bands are essentially the "twinkling" of the Sun's thin crescent in the seconds surrounding totality.

History

Notes and References

  1. http://www.earthview.com/tutorial/effects.htm Effects During a Total Solar Eclipse
  2. The Scintillation Theory of Eclipse Shadow Bands. J. L. Codona. Astronomy and Astrophysics. 0004-6361. 164. 415–27. 1986. 2 . 18 July 2017. 1986A&A...164..415C .
  3. Web site: Explanation from Barrie Jones, Open University. Barrie. Jones. 2010-07-24.
  4. Web site: Wolfgang Strickling's eclipse observations 2001 page. Strickling. Wolfgang. 2007-01-26. The best theory for the emergence of the shadow bands is published by Codona 1986 [2]. His theory meanwhile accepted by the most scientists. ... movement of the shadow bands is caused by winds in the different atmospheric levels.. 24 July 2010.
  5. Book: Total Eclipses: Science, Observations, Myths and Legends . Guillermier . Pierre . Koutchmy . Serge . . 1999 . 151 . The phenomenon of shadow bands – a success of light and dark striations – is somewhat random. German astronomer Hermann Goldschmidt was the first to remark upon this complex refraction phenomenon, in 1820..
  6. Book: The Sun in Eclipse . Maunder . Michael J. de F. . Moore . Patrick . . 1998 . Eclipses – General Principles . 55 . Shadow Bands. In 1820 the German astronomer Hermann Goldschmidt was the first to notice wavy lines seen across the Earth's surface just before totality. These so-called shadow bands [...].
  7. Book: Memoirs . 41 . Chapter IX: Shadow Bands . 40–41 . . 1857.
  8. M. Littmann, K. Willcox, F. Espenak: Totality: eclipses of the sun 2nd edition. Oxford University Press. p. 119
  9. Stevens, Catherine O., The Problem of "Shadow Bands", Journal of the British Astronomical Association, Volume 16, No 2, 1906, pp60-62
  10. Shadow bands during the total solar eclipse of 26 February 1998. Jones, Barrie W.. Journal of Atmospheric and Solar-Terrestrial Physics. 1999 . 61 . 13 . 965–974 . 10.1016/S1364-6826(99)00072-3. 1999JASTP..61..965J .
  11. News: 2009-11-14. BBC News. Sound 'cause of shadow spectacle' . May 21, 2008.
  12. Web site: 2024-04-06 . Scientists get another chance to study a solar eclipse mystery . 2024-04-08 . KUNC . en.