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Titlebook: Collective Diffusion on Surfaces: Correlation Effects and Adatom Interactions; Proceedings of the N M. C. Tringides,Z. Chvoj Conference pro

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發(fā)表于 2025-3-21 19:55:40 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Collective Diffusion on Surfaces: Correlation Effects and Adatom Interactions
副標(biāo)題Proceedings of the N
編輯M. C. Tringides,Z. Chvoj
視頻videohttp://file.papertrans.cn/230/229563/229563.mp4
叢書名稱NATO Science Series II: Mathematics, Physics and Chemistry
圖書封面Titlebook: Collective Diffusion on Surfaces: Correlation Effects and Adatom Interactions; Proceedings of the N M. C. Tringides,Z. Chvoj Conference pro
描述As materials research focuses into finding ways to control the growth of atomic scale structures, there is correspondingly increasing emphasis on to the problem of surface diffusion. Clearly surface diffusion is the key process, which determines how atoms move on the surface. Controlling this motion can lead to the easy fabrication of well-controlled nanostructures broadening the present possibilities in nanotechnology. The paradigm of surface diffusion has outgrown its standard textbook description as a random walk on a rigid substrate. In real systems for more complex situations are encountered: interacting atoms are commonly present on the surface with their motions highly correlated, different phases form on the surface with different dynamics, large concentration gradients drive the system far away from the linear response regime, rich metastable structures form as a result of balanced interplay between different kinetic processes, substrate relaxation can change the energy landscape and the diffusion barriers, etc. The motivation behind this ARW was to bring together the international community working on these problems. We felt that the large number of researchers, new resul
出版日期Conference proceedings 2001
關(guān)鍵詞Adsorption; Epitaxy; LEED; PED; STEM; STM; morphology
版次1
doihttps://doi.org/10.1007/978-94-010-0816-7
isbn_softcover978-0-7923-7116-8
isbn_ebook978-94-010-0816-7Series ISSN 1568-2609
issn_series 1568-2609
copyrightSpringer Science+Business Media Dordrecht 2001
The information of publication is updating

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Surface Dynamics of Stepped Si(001) Studied by Temporal Leed Spectroscopy, Si(001). While we measure activation energies consistent with other work, the observed microscopic mechanism driving the fluctuations is inconsistent with previous claims. We exclude evaporation/condensation of atoms from the steps as the rate limiting kinetics in the temperature range of this expe
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Driven Diffusion in a Model of the O/W(110) System, energetically equivalent and one of higher potential energy. The phase diagram consists of (2 × 1) and (2 × 2) phases as expected. No three-body interactions were needed to reproduce the features of experimental phase diagram. We also study diffusion of the system by analysis of step profile evolut
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Surface Diffusion and Real-Space Renormalization Group,gated using many different theoretical methods applicable to critical phenomena. In fact, mean-field [.], Bethe-Peierls [.], real-space renormalization group (RSRG) [., ., .] and Monte Carlo (MC) [., ., .] methods have been used in order to describe the surface diffusion phenomenon. It was found tha
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Metal Heterodiffusion on Metallic Surfaces: Case of Pb on Cu,tructure and morphology), on the diffusion of Pb on Cu. Pb and Cu are not miscible in bulk; however, surface alloying is observed, in particular at low coverage. The growth is of the “Stranski-Krastanov” type. Above saturation coverage θ., three-dimensional (3D) Pb islands form on top of a Pb wettin
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