Published July 1991 | Version v1
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Jain-Lidiard model calculations of radiation damage in sodium chloride

  • 1. Nationaal Inst. voor Kernfysica en Hoge-Energiefysica (NIKHEF), Amsterdam (Netherlands). Sectie H

Description

In this paper numerical results on radiation damage of NaCl, obtained with an improved version of the Jain-Lidiard model are presented. The major radiation damage products are colloidal Na particles and Cl2 molecules, both embedded in the NaCl lattice. The geometry of the metallic Na particles is likely to be fractal. It is shown that the assumption of fractal dimensionality leads to theoretical damage concentrations which are appreciably smaller than predicted by the original Jain-Lidiard model in which a non-fractal (Euclidian) dimension of the colloidal particle is assumed. (author). 13 refs.; 3 figs.; 1 tab

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Additional details

Additional titles

Subtitle (English)
Presented at the Conference REI'6 (Radiation Effects in Insulators-6), June 24-28, 1991, Weimar, Germany

Publishing Information

Imprint Pagination
13 p.
Report number
ECN-RX--91-069

Conference

Title
6. Conference on Radiation Effects in Insulators, REI'6.
Dates
24-28 Jun 1991.
Place
Weimar (Germany).

Optional Information

Contract/Grant/Project number
Contract no. FI 1W/0235
Notes
This work has been performed in the framework of the European Atomic Energy Community R and D Program on Management and Storage of Radioactive Waste; to be published in a special issue of: Nuclear Instruments and Methods in Physics Research.