Zobrazeno 1 - 7
of 7
pro vyhledávání: '"S I Mol'kov"'
Publikováno v:
Plasma Physics Reports. 46:521-526
In the region of the surface of the probe introduced into the plasma, there are emission flows that introduce changes in the determination of its parameters. Despite the significant development of the theory of probes, when calculating plasma paramet
Autor:
S. I. Mol’kov, V. N. Savin
Publikováno v:
Plasma Physics Reports. 43:202-211
The process of dust grain charging is described with allowance for secondary, ion-induced, photoelectric, and thermal electron emission from the grain surface. The roughness of the grain surface is taken into account. An intermediate charging regime
Publikováno v:
Quantum Electronics. 30:15-19
A mathematical model describing the dissociation of carbon dioxide in sealed-off CO2 waveguide and slit lasers with radio-frequency excitation is presented. The theoretically calculated degrees of dissociation of CO2 were tested experimentally. It wa
Publikováno v:
Journal of Applied Spectroscopy. 66:908-916
Experimentally and theoretically, we investigate the energy and spatial parameters of CO2-laser generation with a gap active-medium geometry, high-frequency excitation, and an unstable-waveguide resonator. A generation power of 54 W is achieved in th
Publikováno v:
SPIE Proceedings.
Experimental and theoretical investigations were made of the power and beam shape by waveguide CO 2 laser with slab geometry and RF excitation of the active medium with waveguide-unstable cavity. The output power in CW mode was 54 W without astigmati
Publikováno v:
Quantum Electronics. 29:337-338
A considerable (by a factor of 5 or more) increase in the output power was achieved by the excitation of the active medium of a CO2 laser in a slit gap on condition that the ratio of the transverse dimensions of the discharge channel exceeded 8:1. It
Publikováno v:
Quantum Electronics. 24:869-870
A compact sealed-off metal-ceramic CO2 rf-excite laser with an output power of 30 MW was constructed. The laser is intended for medical and industrial applications. It utilises a discharge structure of the gap type and hybrid unstable—waveguide cav