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Tuning the properties of Ge-quantum dots superlattices in amorphous silica matrix through deposition conditions (CROSBI ID 185639)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Pinto, Sara R.C. ; Buljan, Maja ; Chahboun, Adil ; Roldan, M.A. ; Bernstorff, Sigrid ; Varela, M. ; Pennycook, S.J. ; Barradas, N.P. ; Alves, E. ; Molina, S.I. et al. Tuning the properties of Ge-quantum dots superlattices in amorphous silica matrix through deposition conditions // Journal of applied physics, 111 (2012), 074316-1-074316-6. doi: 10.1063/1.3702776

Podaci o odgovornosti

Pinto, Sara R.C. ; Buljan, Maja ; Chahboun, Adil ; Roldan, M.A. ; Bernstorff, Sigrid ; Varela, M. ; Pennycook, S.J. ; Barradas, N.P. ; Alves, E. ; Molina, S.I. ; Ramos, M.M.D. ; Gomes, M.J.M.

engleski

Tuning the properties of Ge-quantum dots superlattices in amorphous silica matrix through deposition conditions

In this work, we investigate the structural properties of Ge quantum dot lattices in amorphous silica matrix, prepared by low-temperature magnetron sputtering deposition of (GeþSiO2)/SiO2 multilayers. The dependence of quantum dot shape, size, separation, and arrangement type on the Ge-rich (GeþSiO2) layer thickness is studied. We show that the quantum dots are elongated along the growth direction, perpendicular to the multilayer surface. The size of the quantum dots and their separation along the growth direction can be tuned by changing the Ge-rich layer thickness. The average value of the quantum dots size along the lateral (in-plane) direction along with their lateral separation is not affected by the thickness of the Ge-rich layer. However, the thickness of the Ge-rich layer significantly affects the quantum dot ordering. In addition, we investigate the dependence of the multilayer average atomic composition and also the quantum dot crystalline quality on the deposition parameters.

Ge quantum dots; self-assembly; GISAXS; amorphous silica

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Podaci o izdanju

111

2012.

074316-1-074316-6

objavljeno

0021-8979

10.1063/1.3702776

Povezanost rada

Fizika

Poveznice
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