Search of Interaction Processes of Plasma Opposing Fluxes [Electronic resource] / G. N. Dudkin [et al.]
Язык: английский.Страна: Россия.Серия: Pinches, plasma focus and capillary dischargeРезюме или реферат: The paper presents the results of experimental investigation of interaction processes between two opposite deuterium plasma flows generated by discharges in crossed Е x Н fields counterpropagating in a transverse direction towards the outer magnetic field. It was shown that neutron emission from the dd-reaction (dd → 3He + n) depends on effective interaction of practically depolarized flows; the magnetic field in the area of deuteron plasma flow collision quickly changes (~ 1011 G/s). It was experimentally found out that the area of effective interaction of plasma flows with the concentration of n <= 1016 сm-3 moves in the direction along the magnetic field during a discharge. During the measurements the flow energy stock was equal to up to 600 J and flow velocity was 3.5 · 107 сm/s. The obtained results can be used for correct interpretation of experiments on study of reactions between light nuclei in the area of ultralow particle collision energies in the input channel..Примечания о наличии в документе библиографии/указателя: [References: p. 389 (6 tit.)].Аудитория: .Тематика: физика | плазма | плазменные потоки | взаимодействие | процессы | разряды | магнитные поля | труды учёных ТПУ | электронный ресурс Ресурсы он-лайн:Щелкните здесь для доступа в онлайнTitle from the title-page.
[References: p. 389 (6 tit.)]
The paper presents the results of experimental investigation of interaction processes between two opposite deuterium plasma flows generated by discharges in crossed Е x Н fields counterpropagating in a transverse direction towards the outer magnetic field. It was shown that neutron emission from the dd-reaction (dd → 3He + n) depends on effective interaction of practically depolarized flows; the magnetic field in the area of deuteron plasma flow collision quickly changes (~ 1011 G/s). It was experimentally found out that the area of effective interaction of plasma flows with the concentration of n <= 1016 сm-3 moves in the direction along the magnetic field during a discharge. During the measurements the flow energy stock was equal to up to 600 J and flow velocity was 3.5 · 107 сm/s. The obtained results can be used for correct interpretation of experiments on study of reactions between light nuclei in the area of ultralow particle collision energies in the input channel.
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