Polarity-field driven conductivity in SrTiO/LaAlO: a hybrid functional study
arXiv:2005.12771 · doi:10.1103/PhysRevB.102.115309
Abstract
The origin of the 2-dimensional electron system (2DES) appearing at the (001) interface of band insulators and has been rationalized in the framework of a polar catastrophe scenario. This implies the existence of a critical thickness of polar overlayer () for the appearance of the 2DES: polar catastrophe for thick overlayer is avoided either through a Zener breakdown or a stabilization of donor defects at the surface, both providing electrons to dope the substrate. The observation of a critical thickness is observed in experiments, supporting these hypotheses. Yet, there remains an open debate about which of these possible mechanisms actually occurs first. Using hybrid functional Density Functional Theory, we re-examine these mechanisms at the same level of approximation. Particularly, we clarify the role of donor defects in these heterostructures, and argue that, under usual growth conditions, electric-field driven stabilization of oxygen vacancies and hydrogen adsorbates at the LAO surface occur at a smaller LAO thickness than required for Zener breakdown.
References in corpus (9)
- High Mobility in LaAlO3/SrTiO3 Heterostructures: Origin, Dimensionality and Perspectives
- Origin of charge density at LaAlO3-on-SrTiO3 hetero-interfaces; possibility of intrinsic doping
- Hybrid exchange-correlation functional for accurate prediction of the electronic and structural properties of ferroelectric oxides
- Emergent properties hidden in plane view: Strong electronic correlations at oxide interfaces
- Surface defects and conduction in polar oxide heterostructures
- Polarity-induced oxygen vacancies at LaAlO3|SrTiO3 interfaces
- Polar catastrophe and electronic reconstructions at the LaAlO3/SrTiO3 interface: evidence from optical second harmonic generation
- Tuning up or down the critical thickness in LaAlO3/SrTiO3 through in situ deposition of metal overlayers
- Raman and fluorescence contributions to resonant inelastic soft x-ray scattering on LaAlO/SrTiO heterostructures