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Computer modeling of metal colloid formation in tracks of swift heavy ions in ionic solids
We present results of computer modelling of the aggregation of primary radiation defects-F centers-in ionic crystals within tracks of swift heavy ions. We study how F-aggregate properties depend on the initial density of primary Frenkel defects in the track and its radius. The mean number of F cente...
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Published in: | Radiation effects and defects in solids 2001-11, Vol.155 (1-4), p.145-151 |
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container_end_page | 151 |
container_issue | 1-4 |
container_start_page | 145 |
container_title | Radiation effects and defects in solids |
container_volume | 155 |
creator | Kashcheyevs, V. Kotomin, E. A. Kuzovkov, V. N. |
description | We present results of computer modelling of the aggregation of primary radiation defects-F centers-in ionic crystals within tracks of swift heavy ions. We study how F-aggregate properties depend on the initial density of primary Frenkel defects in the track and its radius. The mean number of F centers in aggregates is typically very small, about five defects, which greatly complicates detection of expected metal colloids by ESR. |
doi_str_mv | 10.1080/10420150108214106 |
format | article |
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The mean number of F centers in aggregates is typically very small, about five defects, which greatly complicates detection of expected metal colloids by ESR.</description><subject>Computer modeling</subject><subject>Condensed matter: structure, mechanical and thermal properties</subject><subject>Defect aggregation</subject><subject>Exact sciences and technology</subject><subject>Ion radiation effects</subject><subject>Ionic solids</subject><subject>LiF</subject><subject>Metal colloids</subject><subject>Physical radiation effects, radiation damage</subject><subject>Physics</subject><subject>Radiation defects</subject><subject>Structure of solids and liquids; crystallography</subject><subject>Swift heavy ions</subject><issn>1042-0150</issn><issn>1029-4953</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2001</creationdate><recordtype>article</recordtype><recordid>eNqFkD9PwzAQxS0EEqXwAdi8MAbOsRs7Eguq-CdVYoGFJXIdGwxOXNmGkm-PQ0EMlWC6u3fvdyc9hI4JnBIQcEaAlUBmkIeSMALVDpoQKOuC1TO6O_asLEbDPjqI8QUABBNsgh7nvlu9JR1w51vtbP-EvcGdTtJh5Z3ztsXGh04m63tse5yCVK9xNMW1NQk_a_k-4LyM4zZXq3D0zrbxEO0Z6aI--q5T9HB1eT-_KRZ317fzi0WhKGepqAQ3bMlKBqQEyZeV4VJXpOYCas5qlgVY6rKlilecSqCaEaazVBsh6nZGp4hs7qrgYwzaNKtgOxmGhkAzhtNshZOZkw2zklFJZ4LslY2_IM2AICL7zjc-23-lsPbBtU2Sg_PhB6J_veH_4ltUkz4S_QSLGYjR</recordid><startdate>20011101</startdate><enddate>20011101</enddate><creator>Kashcheyevs, V.</creator><creator>Kotomin, E. 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We study how F-aggregate properties depend on the initial density of primary Frenkel defects in the track and its radius. The mean number of F centers in aggregates is typically very small, about five defects, which greatly complicates detection of expected metal colloids by ESR.</abstract><cop>Reading</cop><pub>Taylor & Francis Group</pub><doi>10.1080/10420150108214106</doi><tpages>7</tpages></addata></record> |
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subjects | Computer modeling Condensed matter: structure, mechanical and thermal properties Defect aggregation Exact sciences and technology Ion radiation effects Ionic solids LiF Metal colloids Physical radiation effects, radiation damage Physics Radiation defects Structure of solids and liquids crystallography Swift heavy ions |
title | Computer modeling of metal colloid formation in tracks of swift heavy ions in ionic solids |
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