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Triboluminescence

From Wikipedia, the free encyclopedia

Triboluminescence is an optical phenomenon in which light is generated via the breaking of asymmetrical bonds in a crystal when that material is scratched, crushed, or rubbed. This is a variant of luminescence; the term comes from the Greek tribein (to rub) and the Latin lumen (light).

For example, a diamond may begin to glow while being rubbed. This occasionally happens to diamonds while a facet is being ground or the diamond is being sawn during the cutting process. Diamonds may fluoresce blue or red. Ordinary friction tape (the cloth type — not the shiny electrician's tape) displays a glowing line where the end of the tape is being pulled away from the roll. Also when sugar crystals are crushed, tiny electrical fields are created, separating positive and negative charges that then create sparks while trying to reunite. WintOGreen Life Savers work especially well for creating such sparks, due to the fact that wintergreen oil (methyl salicylate) is fluorescent and converts ultraviolet light into blue light. Some Band Aid wrappers also glow blueish-green when unwrapped swiftly.

The discovery of triboluminescence was actually an accident. In the late 1790's sugar production began to produce more refined pure sugar crystals. These crystals were formed into a large solid cone for transport and sale. This solid cone of sugar had to be broken into usable chunks using a device known as a sugar nip. Early American scientists and laymen alike began to notice that as sugar was "nipped" in low light, tiny bursts of light were visible. The first recorded observation however, occurred even earlier and is attributed to English scholar Francis Bacon when he wrote in his 1620 "Novum Organum"[1] that "It is well known that all sugar, whether candied or plain, if it be hard, will sparkle when broken or scraped in the dark.". The scientist Robert Boyle also reported on some of his work on triboluminescence in 1663.

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[edit] Mechanism of action

Materials scientists have not yet arrived at a full understanding of the effect, but the current theory of triboluminescence – based upon crystallographic, spectroscopic, and other experimental evidence – is that upon fracture of asymmetrical materials, charge is separated. When the charges recombine, the electric discharge ionizes the surrounding air, causing a flash of light. Research further suggests that crystals which display triboluminescene must lack symmetry (in order to permit charge separation) and be poor conductors. However, there are substances which break this rule, and which do not possess dissymmetry, yet display triboluminescence anyway. It is thought that these materials contain impurities, which confer properties of dissymmetry to the substance. Much of the work done on triboluminescence has been done by Dr. Linda M. Sweeting who is professor of chemistry at Towson University.

[edit] Uncompahgre Ute Indians

An Uncompaghre Ute Buffalo rawhide ceremonial rattle filled with quartz crystals.  The rattle produces flashes of light created when quartz crystals are subjected to mechanical stress as the rattle is shaken.
An Uncompaghre Ute Buffalo rawhide ceremonial rattle filled with quartz crystals. The rattle produces flashes of light created when quartz crystals are subjected to mechanical stress as the rattle is shaken.

The Uncompahgre Ute Indians from Central Colorado are one of the first documented groups of people in the world credited with the application of mechanoluminescence involving the use of quartz crystals to generate light. The Ute constructed special ceremonial rattles made from buffalo rawhide which they filled with clear quartz crystals collected from the mountains of Colorado and Utah. When the rattles were shaken at night during ceremonies, the friction and mechanical stress of the quartz crystals impacting together through the translucent buffalo hide produced flashes of light. These rattles were believed to call spirits into Ute ceremonies, and were considered extremely powerful religious objects.[citation needed]

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