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Sum frequency generation spectroscopy

surface-sensitive spectroscopy technique

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Record originEnglish Wikipedia
Text licenseCC BY-SA 4.0
Source revisionMay 14, 2026
Entity authorityQ1554233
Source-derived summary

Sum frequency generation spectroscopy (SFG) is a nonlinear laser spectroscopy technique based on sum-frequency generation and used to analyze surfaces and interfaces. It can be expressed as a sum of a series of Lorentz oscillators. In a typical SFG setup, two laser beams mix at an interface and generate an output beam with a frequency equal to the sum of the two input frequencies, traveling in a direction given by the sum of the incident beams' wavevectors.

The technique was developed in 1987 by Yuen-Ron Shen and his students as an extension of second harmonic generation spectroscopy and rapidly applied to deduce the composition, orientation distributions, and structural information of molecules at gas–solid, gas–liquid and liquid–solid interfaces. Soon after its invention, Philippe Guyot-Sionnest extended the technique to obtain the first measurements of electronic and vibrational dynamics at surfaces. SFG has advantages in its ability to be monolayer surface sensitive, ability to be performed in situ (for example aqueous surfaces and in gases), and its capability to provide ultrafast time resolution. SFG gives information complementary to infrared and Raman spectroscopy.

Theory

IR-visible sum frequency generation spectroscopy uses two laser beams (an infrared probe, and a visible pump) that spatially and temporally overlap at a surface of a material or the interface between two media. An output beam is generated at a frequency of the sum of the two input beams. The two input beams must be able to access the surface with sufficiently high intensities, and the output beam must be able to reflect off (or transmit through) the surface in order to be detected.

Editorial summary

This brief starts where responsible research should: with the source description of “Sum frequency generation spectroscopy” as surface-sensitive spectroscopy technique. Everything that follows is an evidence route, not borrowed authority.

Editorial reviewA concise reference frame for defining the subject, testing terminology and identifying the institution closest to the evidence. The current lead gives the account dated anchors—1987—that can be checked directly. The selected authority fields contribute no independent date. The account is most persuasive where frequency, generation and spectroscopy can be independently traced.
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The subject matters to the general reference register because the source frames it as surface-sensitive spectroscopy technique. Its deeper value depends on whether names, dates, institutions and citations support that framing.

Evidence profile

Named sources, stable identifiers and responsible institutions provide the strongest route from overview to verifiable evidence. The source revision retrieved here is dated May 14, 2026. The linked authority identifier is Q1554233. None of the 0 selected statements returned an explicit reference. The first chronological checks are 1987.

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This entry incorporates text from Sum frequency generation spectroscopy” on English Wikipedia. Contributors are listed in the page history. Text is available under the Creative Commons Attribution-ShareAlike 4.0 License. Selected authority identifiers and statements are retrieved from Wikidata under CC0; their references and qualifiers remain part of the verification path.