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- W2557632695 abstract "During the process of ion beam crystallization, the main heating source is Intra-beam scattering (IBS), in which the Coulomb collisions among particles lead to a growth in the 6D phase space volume of the beam. The results of molecular dynamics (MD) simulation have shown an increase of heating rate as the temperature is increased from absolute zero, but then a peak in the heating rate, and subsequent decrease with ever increasing temperature. [J. Wei, H. Okamoto, and A. M. Sessler, Phys. Rev. Lett. 80, 2606 (1994)]. This phenomenon has been carefully studied by Y. Yuri, H. Okamoto, and H. Sugimoto [Y. Yuri, H. Okamoto, and H. Sugimoto, J. Phys. Soc. Jpn. 78, 124501 (2009)]. On the other hand, in the traditional IBS theory valid at high temperatures, heating rate is an ever increasing as the temperature becomes lower and lower. [A. Piwinski, Lect. Notes Phys. 296, 297 (1988)]. In this paper we attempt to extend the traditional IBS theory valid at high temperatures to relatively low temperature range, by including some many body effects in the traditional IBS theory. In particular we take into account the static and dynamic effect of the self-electromagnetic field of the beam. We shall show how these effects modify the traditional IBS theory, and present the evaluation of IBS heating rate of an ion beam in the low temperature range." @default.
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- W2557632695 date "2010-01-01" @default.
- W2557632695 modified "2023-09-22" @default.
- W2557632695 title "INTRABEAM SCATTERING AT LOW TEMPERATURE RANGE" @default.
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