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Kvantovaya Elektronika, 1987 Volume 14, Number 2, Pages 244–252 (Mi qe6545)

Numerical investigation of a purely chemical generator of atomic gaseous hydrogen (deuterium) and of a cw H(D)–O3–CO2 laser utilizing this generator

A. S. Bashkin, N. M. Gamzatov, A. N. Oraevsky


Abstract: A numerical investigation is reported of a generator of atomic gaseous hydrogen (or deuterium) and of a cw low-toxicity H(D)–O3–CO2 laser utilizing this generator. A high nonequilibrium concentration of H (D) atoms is achieved in a supersonic oxygen–hydrogen (or oxygen–deuterium) flame in this generator. Hydrogen (deuterium) combustion regimes convenient for experimental realization and characterized by a molar concentration of atomic hydrogen (deuterium) in the flame by up to ≈15%, are identified. Numerical optimization of all the components of a cw laser system in respect of the principal parameters is used to show that a cw D–O3–CO2 laser utilizing this chemical generator of deuterium atoms can have high output characteristics: a specific output power of ≈140 W·sec·g–1, a chemical efficiency of ≈10%, and an inversion zone of over 30 cm length in the downstream direction.

UDC: 621.373.826.038.823

PACS: 42.55.Ks, 42.55.Lt, 42.60.Pk, 42.60.Lh, 42.60.Jf

Received: 12.03.1986


 English version:
Soviet Journal of Quantum Electronics, 1987, 17:2, 147–152

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