A review of molecular beam epitaxy of ferroelectric BaTiO3 films on Si, Ge and GaAs substrates and their applications

L Mazet, SM Yang, SV Kalinin… - … and technology of …, 2015 - iopscience.iop.org
Science and technology of advanced materials, 2015iopscience.iop.org
SrTiO 3 epitaxial growth by molecular beam epitaxy (MBE) on silicon has opened up the
route to the monolithic integration of various complex oxides on the complementary metal-
oxide–semiconductor silicon platform. Among functional oxides, ferroelectric perovskite
oxides offer promising perspectives to improve or add functionalities on-chip. We review the
growth by MBE of the ferroelectric compound BaTiO 3 on silicon (Si), germanium (Ge) and
gallium arsenide (GaAs) and we discuss the film properties in terms of crystalline structure …
Abstract
SrTiO 3 epitaxial growth by molecular beam epitaxy (MBE) on silicon has opened up the route to the monolithic integration of various complex oxides on the complementary metal-oxide–semiconductor silicon platform. Among functional oxides, ferroelectric perovskite oxides offer promising perspectives to improve or add functionalities on-chip. We review the growth by MBE of the ferroelectric compound BaTiO 3 on silicon (Si), germanium (Ge) and gallium arsenide (GaAs) and we discuss the film properties in terms of crystalline structure, microstructure and ferroelectricity. Finally, we review the last developments in two areas of interest for the applications of BaTiO 3 films on silicon, namely integrated photonics, which benefits from the large Pockels effect of BaTiO 3, and low power logic devices, which may benefit from the negative capacitance of the ferroelectric.
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