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@conference{ad98c74d3dd444cea9e2506a778857a3,
title = "Features of cluster ionization in argon, methane and mixed argon-methane jets: 21-th International Symposium on Plasma Chemistry (ISPC 21). 4 – 9 August 2013. Cairns, Australia. Proceedings. 141. ",
abstract = " It has been confirmed that methane clustering starts at a lower stagnation pressurecompared to argon clustering, which leads to a prolonged delay of cluster formation in argon. It has been demonstrated that it is reasonable to use specially selected gas mixtures for obtaining high-intensity methane cluster flows.",
author = "Khodakov, {M. D.} and Zarvin, {A. E.} and Korobeishchikov, {N. G.} and Kalyada, {V. V.}",
year = "2013",
language = "English",

}

RIS

TY - CONF

T1 - Features of cluster ionization in argon, methane and mixed argon-methane jets

T2 - 21-th International Symposium on Plasma Chemistry (ISPC 21). 4 – 9 August 2013. Cairns, Australia. Proceedings. 141.

AU - Khodakov, M. D.

AU - Zarvin, A. E.

AU - Korobeishchikov, N. G.

AU - Kalyada, V. V.

PY - 2013

Y1 - 2013

N2 - It has been confirmed that methane clustering starts at a lower stagnation pressurecompared to argon clustering, which leads to a prolonged delay of cluster formation in argon. It has been demonstrated that it is reasonable to use specially selected gas mixtures for obtaining high-intensity methane cluster flows.

AB - It has been confirmed that methane clustering starts at a lower stagnation pressurecompared to argon clustering, which leads to a prolonged delay of cluster formation in argon. It has been demonstrated that it is reasonable to use specially selected gas mixtures for obtaining high-intensity methane cluster flows.

M3 - Paper

ER -

ID: 27283441