
sonoluminescence
Sign in to saveright|thumb|Single-bubble sonoluminescence – a single, cavitating bubble Sonoluminescence is luminescence induced by sound waves, such as in the emission of light from imploding bubbles in a liquid when excited by sound. Sonoluminescence is sometimes considered a kind of mechanoluminescence. However, mechanoluminescence is typically defined as pertaining to solids, while sonoluminescence usually pertains to liquids. The related terms acoustoluminescence and sonotriboluminescence have been used to describe sound-induced luminescence in solids (e.g., crystals suspended in slurries).
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Vinony's link graph records 49 inbound references to sonoluminescence, and connects out to Alpheidae, triboluminescence and Sun.
It sits within the topics 1934 in science, Acoustics and Bubbles (physics).
Vinony links it to 36 Wikipedia language editions.
Wikidata facts
- Instance of
- physical phenomenon
- Subclass of
- luminescence
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- Commons category
- Sonoluminescence
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via Wikidata · CC0
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Encyclopedic overview
12 sectionsContents
- History
- Properties
- Rayleigh–Plesset equation
- Mechanism of phenomena
- Other proposals
- Quantum explanations
- Nuclear reactions
- Biological sonoluminescence
- See also
- References
- Further reading
- External links
right|thumb|Single-bubble sonoluminescence – a single, cavitating bubble Sonoluminescence is luminescence induced by sound waves, such as in the emission of light from imploding bubbles in a liquid when excited by sound. Sonoluminescence is sometimes considered a kind of mechanoluminescence. However, mechanoluminescence is typically defined as pertaining to solids, while sonoluminescence usually pertains to liquids. The related terms acoustoluminescence and sonotriboluminescence have been used to describe sound-induced luminescence in solids (e.g., crystals suspended in slurries).
Sonoluminescence was first discovered in 1934 at the University of Cologne. It occurs when a sound wave of sufficient intensity induces a gaseous cavity within a liquid to collapse quickly, emitting a burst of light. The phenomenon can be observed in stable single-bubble sonoluminescence (SBSL) and multi-bubble sonoluminescence (MBSL). In 1960, Peter Jarman proposed that sonoluminescence is thermal in origin and might arise from microshocks within collapsing cavities. Later experiments revealed that the temperature inside the bubble during SBSL could reach up to . The exact mechanism behind sonoluminescence remains unknown, with various hypotheses including hotspot, bremsstrahlung, and collision-induced radiation. Some researchers have even speculated that temperatures in sonoluminescing systems could reach millions of kelvins, potentially causing thermonuclear fusion; this idea, however, has been met with skepticism by other researchers. The phenomenon has also been observed in nature, with the pistol shrimp being the first known instance of an animal producing light through sonoluminescence.
Excerpted from Wikipedia’s “sonoluminescence” article, available under the CC BY-SA 4.0 licence.