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Optimization of conditions for selective dissociation of trifluorobromomethane molecules in carbon isotope separation
O. N. Avatkov,
V. B. Laptev,
E. A. Ryabov,
N. P. Furzikov
Abstract:
An experimental study was made of the characteristics of multiphoton dissociation of CF
3Br molecules when
13CF
3Br is excited under collisional conditions. For the first time, measurements were made of the selectivity of multiphoton excitation of a natural mixture of
12C and
13C isotopes, and its dependences on the excitation frequency and buffer pressure were determined. It was observed that the selectivity of excitation of
13CF
3Br molecules in the low-frequency wing of the ν
1 band is governed by the absorption at the 3ν
3 overtone and its thermal bands, and the dissociation selectivity is governed exclusively by the conditions of excitation of the molecules in the ν
1 band. The optimum regime for selective dissociation of CF
3Br in terms of energy consumption matched to the parameters of existing CO
2 lasers was determined. At a radiation energy density of 2.6 J/cm
2 the energy consumption is ~260 eV per
13C atom. This regime may be used as the first stage in laser enrichment of carbon isotopes.
UDC:
621.373.826:621.039.8
PACS:
33.80.Gj,
33.80.Rv,
42.50.Hz Received: 26.04.1984