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On the possibility of developing quasi-CW high-power high-pressure laser on 4p–4s transition of ArI with electron beam—optical pumping: quenching of 4s (<sup>3</sup>P<sub>2</sub>) lower laser level
14
Citations
12
References
2017
Year
Argon Atom TransitionEngineeringLaser ScienceLaser-plasma InteractionLaser PhysicsLaser ApplicationsChemistryHigh-power LasersElectron OpticElectron Beam—optical PumpingOptical PropertiesFast Electron BeamArgon.the Rate ConstantsOptical PumpingPhotonicsLaser PumpingPhysicsRelativistic Laser-matter InteractionAtomic PhysicsSynchrotron RadiationLower Laser LevelNatural SciencesApplied PhysicsHigh-energy LasersOptoelectronics
A new electron beam-optical procedure is proposed for quasi-cw pumping of high-pressure large-volume He-Ar laser on 4p[1/2] 1 -4s[3/2] 2 argon atom transition at the wavelength of 912.5 nm.It consists of creation and maintenance of a necessary density of 4s[3/2] 2 metastable state in the gain medium by a fast electron beam and subsequent optically pumping of the upper laser level via the classical three-level scheme using a laser diode.Absorption probing is used to study collisional quenching of Ar * metastable in electron-beam-excited high-pressure He-Ar mixtures with a low content of argon.The rate constants for plasma-chemical reactions Ar*+He+Ar-Ar 2 *+He (3.6 +-0.4)x10 -33 cm 6 /s, Ar+2He-HeAr*+He (4.4 +-0.9)x10 -36 cm 6 /s and Ar*+He-Products+He (2.4 +-0.3)x10 -15 cm 3 /s are for the first time measured.
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