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Spectral line
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Wikipedia.org
Spectral line (Wikipedia.org)

A spectral line is a dark or bright line in an otherwise uniform and continuous spectrum, resulting from an excess or deficiency of photons in a narrow frequency range, compared with the nearby frequencies.

Spectral lines are the result of interaction between a quantum system (usually atoms, but sometimes molecules or atomic nuclei) and single photons. When a photon has exactly the right energy to allow a change in the energy state of the system (in the case of an atom this is usually an electron changing orbitals), the photon is absorbed. Then it will be spontaneously re-emitted, either in the same frequency as the original or in a cascade, where the sum of the energies of the photons emitted will be the same as the energy of the one absorbed. The direction of the new photons will not be related to the direction of travel of the original photon.

Depending on the geometry of the gas, the photon source and the observer, either an emission line or an absorption line will be produced. If the gas is between the photon source and the observer, a decrease in the intensity of light in the frequency of the incident photon will be seen, as the reemitted photons will mostly be in directions different from the original one. This will be an absorption line. If the observer sees the gas, but not the original photon source, then the observer will see only the photons reemitted in a narrow frequency range. This will be an emission line.

Absorption and emission lines are highly atom-specific, and can be used to easily identify the chemical composition of any medium capable of letting light pass through it (typically gas is used). Several elements were discovered by spectroscopic means -- helium, thallium, cerium, etc. Spectral lines also depend on the physical conditions of the gas, so they are widely used to determine the chemical composition of stars and other celestial bodies that cannot be analyzed by other means, as well as their physical conditions.

Isomer shift is the displacement of an absorption line due to the absorbing nuclei having different s-electron densities from that of the emitting nuclei.

Mechanisms other than atom-photon interaction can produce spectral lines. Depending on the exact physical interaction (with molecules, single particles, etc.) the frequency of the involved photons will vary widely, and lines can be observed across all the electromagnetic spectrum, from radio waves to gamma rays.

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A spectroscopic instrument can resolve two nearby wavelengths lambda and lambda+delta lambda if lambda/delta lambda is smaller than 8000. This is used to study the spectral lines of the Balmer series ...
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a year ago
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Extract from the 1999 BBC documentary 'The Planets' regarding our sun (including Skylab, solar flares, sun spots, chemical absorption lines and magnetic distortions).
10m 49s |
2 years ago
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Visit http://CanuckPolitics.com for more. May 29, 2008 - Prime Minister Harper promotes Canada's plan for reducing greenhouse gas emissions at the Canada-UK Chamber of Commerce in London, England.
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a year ago
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Find out what Spectral Lines are?
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Zero Emmission No Noise car as seen @ GreenMallOnline.com
a year ago
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This animation shows how the orbits of two stars in a binary system produces a periodic splitting in a spectral line due to the doppler effect.
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A look at spectral lines from different elements and molecules, and from a thermal emitter.
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10 months ago
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The recent report of the Dutch Delta committee, guided by ex-minister Cees Veerman warned that even with all efforts possible to reduce C02-emissions, climate change is going to affect The ...
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11 months ago
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