Department of Earth and Environmental Sciences, Section Crystallography and Center of Nanoscience, University of Munich, Germany.
Philos Trans A Math Phys Eng Sci. 2012 Oct 28;370(1977):4904-26. doi: 10.1098/rsta.2012.0202.
A wealth of intriguing properties emerge in the seemingly simple system composed of the band insulators LaAlO(3) and SrTiO(3) such as a two-dimensional electron gas, superconductivity and magnetism. In this paper, we review the current insight obtained from first principles calculations on the mechanisms governing the behaviour of thin LaAlO(3) films on SrTiO(3)(001). In particular, we explore the strong dependence of the electronic properties on the surface and interface termination, the finite film thickness, lattice polarization and defects. A further aspect that is addressed is how the electronic behaviour and functionality can be tuned by an SrTiO(3) capping layer, adsorbates and metallic contacts. Lastly, we discuss recent reports on the coexistence of magnetism and superconductivity in this system for what they might imply about the electronic structure of this system.
在由带隙绝缘体 LaAlO(3) 和 SrTiO(3) 组成的看似简单的系统中,涌现出了丰富的有趣特性,例如二维电子气、超导性和磁性。在本文中,我们综述了基于第一性原理计算所得的、关于控制 SrTiO(3)(001) 上薄 LaAlO(3) 薄膜行为的机制的最新认识。特别地,我们探讨了表面和界面终止、有限薄膜厚度、晶格极化和缺陷对电子性质的强烈依赖性。另外还讨论了如何通过 SrTiO(3) 覆盖层、吸附物和金属接触来调整电子行为和功能。最后,我们讨论了最近关于该体系中磁性和超导共存的报告,以及它们对该体系电子结构的可能暗示。