Skip to content
Surf Wiki
Save to docs
politics

From Surf Wiki (app.surf) — the open knowledge base

Doubly ionized oxygen

Oxygen ion in astronomy and atomic physics


Oxygen ion in astronomy and atomic physics

In astronomy and atomic physics, doubly ionized oxygen is the ion O2+ (O III in spectroscopic notation).

Ion

Its emission of forbidden lines in the visible spectrum fall primarily at the wavelength 500.7 nm, and secondarily at 495.9 nm. Before spectra of oxygen ions became known, these lines once led to a spurious identification of the substance as a new chemical element. Concentrated levels of O III are found in diffuse and planetary nebulae. Consequently, narrow band-pass filters that isolate the 500.7 nm and 495.9 nm wavelengths of light, that correspond to green-turquoise-cyan spectral colors, are useful in observing these objects, causing them to appear at higher contrast against the filtered and consequently blacker background of space (and possibly light-polluted terrestrial atmosphere) where the frequencies of [O III] are much less pronounced.

These emission lines were first discovered in the spectra of planetary nebulae in the 1860s. At that time, they were thought to be due to a new element which was named nebulium. In 1927, Ira Sprague Bowen published the current explanation identifying their source as doubly ionized oxygen.

Other transitions include the forbidden 88.4 μm and 51.8 μm transitions in the far infrared region.

Permitted lines of O III lie in the middle ultraviolet band and are hence inaccessible to terrestrial astronomy.

References

References

  1. Bowen, I. S.. (1927). "The Origin of the Nebulium Spectrum". Nature.
  2. (1989). "Astrophysics of gaseous nebulae and active galactic nuclei". University Science Books.
Info: Wikipedia Source

This article was imported from Wikipedia and is available under the Creative Commons Attribution-ShareAlike 4.0 License. Content has been adapted to SurfDoc format. Original contributors can be found on the article history page.

Want to explore this topic further?

Ask Mako anything about Doubly ionized oxygen — get instant answers, deeper analysis, and related topics.

Research with Mako

Free with your Surf account

Content sourced from Wikipedia, available under CC BY-SA 4.0.

This content may have been generated or modified by AI. CloudSurf Software LLC is not responsible for the accuracy, completeness, or reliability of AI-generated content. Always verify important information from primary sources.

Report