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相关论文: Positioning of self-assembled Ge islands on stripe…

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Si/Ge heteroepitaxial dots under tensile strain are grown on nanostructured Ge substrates produced by high-temperature flash heating exploiting the spontaneous faceting of the Ge(001) surface close to the onset of surface melting. A very…

介观与纳米尺度物理 · 物理学 2019-04-18 L. Persichetti , M. Fanfoni , B. Bonanni , M. De Seta , L. Di Gaspare , C. Goletti , L. Ottaviano , A. Sgarlata

The morphological evolution and the effect of growth temperature on size, orientation and composition of molecular beam epitaxy grown Ge-Si islands on Si(5 5 12) surfaces have been investigated in the temperature range from room temperature…

材料科学 · 物理学 2012-12-06 J. K. Dash , A. Rath , R. R. Juluri , P. V. Satyam

Growth of narrow-neck, epitaxial as well as non-epitaxial and nearly spherical Ge islands on air-exposed Si(111)-(7\times7) surfaces has been investigated by in-situ scanning tunnelling microscopy (STM) and ex-situ high resolution…

介观与纳米尺度物理 · 物理学 2011-10-20 K. Bhattacharjee , A. Roy , S. Roy , J. Ghatak , S. Mathew , P. V. Satyam , B. N. Dev

The epitaxial growth conditions for silicon on germanium substrates were investigated as a function of growth temperature and monolayer coverage. Island formation was observed for the hole studied temperature range, although strong alloying…

材料科学 · 物理学 2009-11-11 D. Pachinger , H. Lichtenberger und F. Schaeffler

We examine the structure and the evolution of Ge islands epitaxially grown on vicinal Si(111) surfaces by scanning tunneling microscopy. Contrary to what is observed on the singular surface, three-dimensional Ge nanoislands form directly…

介观与纳米尺度物理 · 物理学 2011-10-25 L. Persichetti , R. Menditto , A. Sgarlata , M. Fanfoni , A. Balzarotti

Growth and strain behavior of thin Ag films on Si substrate have been investigated by scanning tunneling microscopy, cross-sectional transmission electron microscopy and high resolution x-ray diffraction studies. Ag islands formed on Si at…

材料科学 · 物理学 2007-05-23 D. K. Goswami , K. Bhattacharjee , B. Satpati , S. Roy , G. Kuri , P. V. Satyam , B. N. Dev

The present study elucidates the correlation between the structural and optical properties of GaN nanowires grown on Si(111) substrate by plasma assisted molecular beam epitaxy (PA-MBE) technique under various growth conditions. GaN NWs…

In the Ge on Si model heteroepitaxial system, metal patterns on the silicon surface provide unprecedented control over the morphology of highly ordered Ge islands. Island shape including nanorods and truncated pyramids is set by the metal…

The results of STM and RHEED studies of a thin Ge film grown on the Si/Si(001) epitaxial layers with different surface relief are presented. Process of the partial stress relaxation was accompanied by changes in the surface structure of the…

We have carried out scanning tunneling microscopy experiments under ultrahigh vacuum condition to study the morphology of ultrathin Ge films eposited on pristine Si(100) and ion-irradiated Si(100) self-affine fractal surfaces. The pristine…

材料科学 · 物理学 2009-11-10 D. K. Goswami , K. Bhattacharjee , B. N. Dev

Self assembly on suitably chosen substrates is a well exploited root to control the structure and morphology, hence magnetization, of metal films. In particular, the Cu3Au(001) surface has been recently singled out as a good template to…

材料科学 · 物理学 2009-11-07 A. Verdini , L. Floreano , F. Bruno , D. Cvetko , A. Morgante , F. Bisio , S. Terreni , M. Canepa

We analyze the shape and position of heteroepitaxial InAs islands on the top face of cylindrical GaAs(111)A nanopillars experimentally and theoretically. Catalyst-free molecular beam epitaxial growth of InAs at low temperatures on GaAs…

材料科学 · 物理学 2020-01-14 T. Riedl , V. S. Kunnathully , A. Trapp , T. Langer , D. Reuter , J. K. N. Lindner

We studied and optimized the molecular beam epitaxy of GaSb layers on vicinal (001) Si substrates using a GaAs nucleation layer. An in-depth analysis of the different growth stages under optimized conditions revealed the formation of a high…

材料科学 · 物理学 2019-10-25 M. Rio Calvo , J-B Rodriguez , L. Cerutti , M. Ramonda , G. Patriarche , E. Tournié

The deposition of ultrathin Fe films on the Mo(110) surface at elevated temperatures results in the formation of distinctive nanowedge islands supported on a pseudomorphic Fe layer. We propose a model explaining the growth mode of these…

其他凝聚态物理 · 物理学 2007-05-23 I. V. Shvets , S. Murphy , S. Makarov , V. Usov , G. Mariotto , N. Berdunov

The article presents an experimental study of an issue of whether the formation of arrays of Ge quantum dots on the Si(001) surface is an equilibrium process or it is kinetically controlled. We deposited Ge on Si(001) at the room…

介观与纳米尺度物理 · 物理学 2015-07-16 Mikhail S. Storozhevykh , Larisa V. Arapkina , Vladimir A. Yuryev

Clean Si(111)-(7{x7) surfaces, followed by air-exposure, have been investigated by reflection high energy electron diffraction (RHEED) and scanning tunneling microscopy (STM). Fourier transforms (FTs) of STM images show the presence of…

其他凝聚态物理 · 物理学 2016-03-15 Anupam Roy , K. Bhattacharjee , J. Ghatak , B. N. Dev

Self-assembled Ge wires with a height of only 3 unit cells and a length of up to 2 micrometers were grown on Si(001) by means of a catalyst-free method based on molecular beam epitaxy. The wires grow horizontally along either the [100] or…

X-ray diffuse scattering in the vicinity of a basis-forbidden (200) Bragg reflection was measured for a sample with uncapped self-assembled Ge islands epitaxially grown on Si(001). Our results provide evidence of atomically ordered SiGe…

Molecular beam epitaxy of Ge (111) thin films on epitaxial-Gd2O3/Si(111) substrates is reported, along with a systematic investigation of the evolution of Ge growth, and structural defects in the grown epilayer. While Ge growth begins in…

Structural models of growing Ge hut clusters---pyramids and wedges---are proposed on the basis of data of recent STM investigations of nucleation and growth of Ge huts on the Si(001) surface in the process of molecular beam epitaxy. It is…

材料科学 · 物理学 2013-09-13 Larisa V. Arapkina , Vladimir A. Yuryev
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