Ultra-thin films of Dy are grown on Ge(0 0 1) substrates by molecular beam deposition near room temperature and immediately annealed for solid phase epitaxy at higher temperatures, leading to the formation of DyGex films. Thin films of Dy2O3 are grown on the DyGex film on Ge(0 0 1) substrates by molecular beam epitaxy. Streaky reflection high energy electron diffraction (RHEED) patterns reveal that epitaxial DyGex films grow on Ge(0 0 1) substrates with flat surfaces. X-ray diffraction (XRD) spectrum suggests the growth of an orthorhombic phase of DyGex films with (0 0 1) orientations. After the growth of Dy2O3 films, there is a change in RHEED patterns to spotty features, revealing the growth of 3D crystalline islands. XRD spectrum shows t...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...
Dysprosium oxide (Dy2O3) films are grown epitaxially on high mobility Ge(100) substrates by molecula...
Dy thin films are grown on Ge(0 0 1) substrates by molecular beam deposition at room temperature. Su...
Dy thin films are grown on Ge(001) substrates by molecular beam deposition at room temperature. Subs...
Epitaxial Dy2O3 thin films are grown on SrTiO3(001) substrates by molecular beam epitaxy. Structural...
Dy2O3 layers have been grown on SrTiO3 by molecular beam epitaxy. X-ray and electron diffraction pat...
The rare earth thin films are frequently the focus of investigators due to their unusual structural ...
Molecular beam epitaxy of Ge (111) thin films on epitaxial-Gd2O3/Si(111) substrates is reported, alo...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Epitaxial, (2 1 1)-oriented thin films of RFe2 (R: rare earth; here: Dy, Tb) were deposited by molec...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...
Dysprosium oxide (Dy2O3) films are grown epitaxially on high mobility Ge(100) substrates by molecula...
Dy thin films are grown on Ge(0 0 1) substrates by molecular beam deposition at room temperature. Su...
Dy thin films are grown on Ge(001) substrates by molecular beam deposition at room temperature. Subs...
Epitaxial Dy2O3 thin films are grown on SrTiO3(001) substrates by molecular beam epitaxy. Structural...
Dy2O3 layers have been grown on SrTiO3 by molecular beam epitaxy. X-ray and electron diffraction pat...
The rare earth thin films are frequently the focus of investigators due to their unusual structural ...
Molecular beam epitaxy of Ge (111) thin films on epitaxial-Gd2O3/Si(111) substrates is reported, alo...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Epitaxial, (2 1 1)-oriented thin films of RFe2 (R: rare earth; here: Dy, Tb) were deposited by molec...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...
International audienceIn this work, the growth of germanium by ultrahigh vacuum chemical vapor depos...