Frequency addition source of optical radiation

From Infogalactic: the planetary knowledge core
(Redirected from FASOR (laser physics))
Jump to: navigation, search

<templatestyles src="Module:Hatnote/styles.css"></templatestyles>

Lua error in package.lua at line 80: module 'strict' not found.

A 50W FASOR used at the Starfire Optical Range.

FASOR is an acronym for frequency addition source of optical radiation. The name is used for a certain type of guide star laser deployed at US Air Force Research Laboratory facilities SOR and AMOS. Commercialization has been attempted by the company FASORtronics.[1] The laser light is produced in a sum-frequency generation process from two solid-state laser sources that operate at different wavelengths. The frequencies of the sources add directly to a summed frequency. Thus, if the source wavelengths are \lambda_1 and \lambda_2, the resulting wavelength is

 \lambda = \left(\frac{1}{\lambda_1} + \frac{1}{\lambda_2} \right)^{-1}.

Application

The FASOR is used for laser guide star experiments. It is tuned to the D2a hyperfine component of the sodium D line and used to excite sodium atoms in the mesospheric upper atmosphere. The FASOR consists of two single-frequency injection-locked Nd:YAG lasers close to 1064 and 1320 nm that are both resonant in a cavity containing a lithium triborate (LBO) crystal, which sums the frequencies yielding 589.158 nm light.

References

  1. Lua error in package.lua at line 80: module 'strict' not found.