In this work, we present a systematic study of the effect of the stoichiometry of BaTiO3 (BTO) films grown on the Ge(001) substrate by molecular-beam-epitaxy using different characterization methods relying on beam diffraction, including reflection high-energy electron diffraction (RHEED), X-ray diffraction (XRD), and selected-area electron diffraction in transmission electron microscopy. Surprisingly, over a wide range of [Ba]/[Ti] ratios, as measured by the Rutherford backscattering spectrometry, all the BTO layers exhibit the same epitaxial relationship BTO(001)// Ge(001) with the substrate, describing a 45 degrees lattice rotation of the BTO lattice with respect to the Ge lattice. However, varying the [Ba]/[Ti] ratio does change the di...
The ferroelectric BaTiO3(001) ultrathin film (10 nm) was grown epitaxially on SrTiO3(001) substrate ...
2007-2008 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
The BaTiO3 thin film was grown epitaxially on SrTiO3(001) substrate by laser molecular beam epitaxy ...
In this work, we present a systematic study of the effect of the stoichiometry of BaTiO3 (BTO) films...
Thin films of perovskite type BaTiO3 (BTO) oxide have been grown epitaxially directly on Ge(001) sur...
Titanates exhibit electronic properties highly desirable for field effect transistors such as very h...
One challenge of investigating ferroelectrics at the nanoscale has been controlling the stoichiometr...
International audienceWe have investigated the growth of BaTiO3 thin films deposited on pure and 1% ...
International audienceWe present a study of the chemical and atomic properties of 5 nm TiO2-terminat...
Dielectric barium strontium titanate films were deposited on MgO (001) substrate by pulsed‐laser dep...
We investigate the metallic surface state in ultrathin films of BaTiO3 by angle-resolved photoemissi...
Atomic layer deposition allows the fabrication of BaTiO3 (BTO) ultrathin films with tunable dielectr...
SrTiO3 epitaxial growth by molecular beam epitaxy (MBE) on silicon has opened up the route to the mo...
International audienceIntegration of epitaxial complex ferroelectric oxides such as BaTiO3 on semico...
Homoepitaxial SrTiO3 thin films grown by molecular beam epitaxy are analyzed using high-resolution x...
The ferroelectric BaTiO3(001) ultrathin film (10 nm) was grown epitaxially on SrTiO3(001) substrate ...
2007-2008 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
The BaTiO3 thin film was grown epitaxially on SrTiO3(001) substrate by laser molecular beam epitaxy ...
In this work, we present a systematic study of the effect of the stoichiometry of BaTiO3 (BTO) films...
Thin films of perovskite type BaTiO3 (BTO) oxide have been grown epitaxially directly on Ge(001) sur...
Titanates exhibit electronic properties highly desirable for field effect transistors such as very h...
One challenge of investigating ferroelectrics at the nanoscale has been controlling the stoichiometr...
International audienceWe have investigated the growth of BaTiO3 thin films deposited on pure and 1% ...
International audienceWe present a study of the chemical and atomic properties of 5 nm TiO2-terminat...
Dielectric barium strontium titanate films were deposited on MgO (001) substrate by pulsed‐laser dep...
We investigate the metallic surface state in ultrathin films of BaTiO3 by angle-resolved photoemissi...
Atomic layer deposition allows the fabrication of BaTiO3 (BTO) ultrathin films with tunable dielectr...
SrTiO3 epitaxial growth by molecular beam epitaxy (MBE) on silicon has opened up the route to the mo...
International audienceIntegration of epitaxial complex ferroelectric oxides such as BaTiO3 on semico...
Homoepitaxial SrTiO3 thin films grown by molecular beam epitaxy are analyzed using high-resolution x...
The ferroelectric BaTiO3(001) ultrathin film (10 nm) was grown epitaxially on SrTiO3(001) substrate ...
2007-2008 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
The BaTiO3 thin film was grown epitaxially on SrTiO3(001) substrate by laser molecular beam epitaxy ...