Abstract
The stability of operation of parallel explosive-emission cathodes driven by a split high-voltage pulse with a subnanosecond leading front has been studied. It is established that, upon the training of graphite cathodes in vacuum with up to ∼104 pulses, the current pulse fronts of injected high-current electron beams exhibit a mutual temporal dispersion not exceeding ten picoseconds. The dynamics of this parameter during the training stage, the variation of the absolute spread, and the growth of a relative delay of the moments of beam injection have been investigated.
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Original Russian Text © M.I. Yalandin, A.G. Reutova, M.R. Ul’maskulov, K.A. Sharypov, V.G. Shpak, S.A. Shunailov, A.I. Klimov, V.V. Rostov, G.A. Mesyats, 2009, published in Pis’ma v Zhurnal Tekhnicheskoĭ Fiziki, 2009, Vol. 35, No. 17, pp. 41–49.
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Yalandin, M.I., Reutova, A.G., Ul’maskulov, M.R. et al. Picosecond stability of injection of parallel high-current pulsed electron beams. Tech. Phys. Lett. 35, 804–807 (2009). https://doi.org/10.1134/S1063785009090065
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DOI: https://doi.org/10.1134/S1063785009090065