Gain saturation in gas flow and chemical lasers


Autoria(s): 高智
Data(s)

1985

Resumo

A theoretical model for gain saturation in gas flow and chemical lasers is presented. The theory is applicable to all possible numerical values of τ/τc, where τ is the characteristie flow time for the flowing gas to move across the laser action region and τc is the characteristic collision relaxation time. The saturation effects of the convection and the "source flow" of the inverted population are revealed. A general relation of gain coefficient and some new gain saturation laws are obtained. For the special case of τ/τc1, the present theoretical results agree with the experimental results on the "anomalous" saturation phenomena in the supersonic diffusion HF chemical laser determined recently by Gross and Coffer[8]. The theory also agrees with the measured results of saturation intensity varying with τ/τc in gas flow CO2 lasers[7]. For the special case of τ/τc1, the present theory is consistent with both the standard theory[1] for gas lasers where the gas has no macroscopic motion and the known gain saturation theory[2-5] for gas flow and chemical lasers.

Identificador

http://dspace.imech.ac.cn/handle/311007/39816

http://www.irgrid.ac.cn/handle/1471x/5254

Idioma(s)

英语

Fonte

Scientia Sinica Series A-Mathematical Physical Astronomical & Technical Sciences.1985,28(2):201-214

Tipo

期刊论文