Formation of linearly linked Fe clusters on Si(111)-7 × 7-C2H5OH surface

Author:

Ding Wanyu,Ju Dongying,Guo Yuanyuan,Tanaka Ken-ichi,Komori Fumio

Abstract

Abstract The Fe atoms were deposited on the Si(111)-7 × 7 surface, which has been saturated with the C2H5OH molecules. Then, the Fe clusters were formed on Si(111)-7 × 7-C2H5OH surface and in situ observed by the scanning tunneling microscopy (STM). The STM images showed that with the increase of Fe clusters, the size of clusters was about 5 nm and they self-assembled in straightly linked chain crossing the step to lower or upper terrace. X-ray photoelectron spectroscopy (XPS) was in situ carried out on the surface of Fe/Si(111)-7 × 7-C2H5OH samples before and after the introduction of thin air (4.5 × 10-2 Langmuir) into the STM chamber. The XPS results showed that the Fe clusters are stable in the abovementioned thin air condition at room temperature. Based on the STM and XPS results, the driving force making one-dimensional straightly linked chain structure might be the magnetic force of the Fe clusters. The formation of straightly linked Fe clusters chains suggests the formation of single magnetic domain Fe clusters. PACS 07.79.Cz, 81.15.-z, 75.75.Fk

Publisher

Springer Science and Business Media LLC

Subject

Condensed Matter Physics,General Materials Science

Reference23 articles.

1. Weiss P: Hypothesis of the molecular field and ferromagnetic properties. J Phys 1907, 4: 661.

2. Landau LD, Lifshitz E: On the theory of the dispersion of magnetic permeability in ferromagnetic bodies. Phys Z Sovietunion 1935, 8: 153.

3. Mills DL, Bland JAC: Nanomagnetism: Ultrathin Films, Multilayers and Nanostructures. Amsterdam: Elsevier BV; 2006.

4. Cullity BD, Graham CD: Introduction to Magnetic Materials. Hoboken: Wiley; 2009.

5. Hubert A, Schäfer R: Magnetic Domains: The Analysis of Magnetic Microstructures. Berlin: Springer; 2009.

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