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The book presents the characteristics and parameters of an overstressed nanosecond discharge of atmospheric pressure between electrodes made of zinc, copper and aluminum in air and argon at atmospheric pressure. The technique, methods and experimental conditions for studying the characteristics and parameters of an overstressed nanosecond discharge and its application for the synthesis of thin nanostructured films of transition metal oxides synthesized under intense UV irradiation of a substrate with a film are presented. Microexplosions of inhomogeneities on the surface of electrodes in a…mehr

Produktbeschreibung
The book presents the characteristics and parameters of an overstressed nanosecond discharge of atmospheric pressure between electrodes made of zinc, copper and aluminum in air and argon at atmospheric pressure. The technique, methods and experimental conditions for studying the characteristics and parameters of an overstressed nanosecond discharge and its application for the synthesis of thin nanostructured films of transition metal oxides synthesized under intense UV irradiation of a substrate with a film are presented. Microexplosions of inhomogeneities on the surface of electrodes in a strong electric field act as a source of metal vapor in plasma.The spatial, electrical and optical characteristics of an overstressed nanosecond discharge between transition metal electrodes in air and argon, which was ignited in the needle-to-needle electrode system, are presented. The results of experimental measurements of the parameters of the discharge plasma based on gas-vapor mixtures "Cu-air" are presented.
Autorenporträt
Alexander Shuaibov - Doctor en fisioterapia. Ciencias, Profesora, Investigadora Titular.Antonina Malinina - Ph.D. Licenciada en Ciencias Físicas y Matemáticas, 2015.Alexander Malinin - Doctor en fisioterapia. Ciencias, profesor, investigador principal, miembro de la Academia de Ciencias de Nueva York (asociado).