4.4 Article Proceedings Paper

Growth of ferromagnetic dot arrays on Cu(001)-c(2 x 2)N surfaces

Journal

SURFACE SCIENCE
Volume 493, Issue 1-3, Pages 539-546

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/S0039-6028(01)01263-8

Keywords

growth; iron; cobalt; copper; nitrogen atom; scanning tunneling microscopy; metal-metal magnetic heterostructures

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Growth of iron is studied on the nitrogen adsorbed Cu(0 0 1) surface, where 5 x 5 nm(2) patches of N-adsorbed c(2 x 2) structure are squarely arranged and separated by a few nm wide clean Cu(0 0 1) surfaces. Mono-atomic layer Fe dots initially grow at the intersections of the clean Cu lines when the widths of the lines are smaller than 3 nm. The results are compared with the previous results on the growth of Ni and Co on the same surface. The position-selective nucleation of iron dots is ascribed to the difference in the surface strain caused by the presence of c(2 x 2)N patches; strain at the intersection is smaller than that at the middle of the narrow line. Similar explanation is applicable for Ni and Cc growth although the detail of the selective growth depends on the species. On nitrogen-saturated Cu(0 0 1) surfaces as well, position-selective nucleation of iron dots is observed and the origin is also ascribed to the inhomogeneous surface strain. (C) 2001 Elsevier Science B.V. All rights reserved.

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