English

Electron gas induced in SrTiO$_3$

Mesoscale and Nanoscale Physics 2016-06-22 v2

Abstract

This mini-review is dedicated to the 85th birthday of Prof. L. V. Keldysh, from whom we have learned so much. In this paper we study the potential and electron density depth profiles in surface accumulation layers in crystals with a large and nonlinear dielectric response such as SrTiO3_3 (STO) in the cases of planar, spherical and cylindrical geometries. The electron gas can be created by applying an induction D0D_0 to the STO surface. We describe the lattice dielectric response of STO using the Landau-Ginzburg free energy expansion and employ the Thomas-Fermi (TF) approximation for the electron gas. For the planar geometry we arrive at the electron density profile n(x)(x+d)12/7n(x) \propto (x+d)^{-12/7}, where dD07/5d \propto D_0^{-7/5} . We extend our results to overlapping electron gases in GTO/STO/GTO multi-heterojunctions and electron gases created by spill-out from NSTO (heavily nn-type doped STO) layers into STO. Generalization of our approach to a spherical donor cluster creating a big TF atom with electrons in STO brings us to the problem of supercharged nuclei. It is known that for an atom with nuclear charge ZeZe, where Z>170Z > 170, electrons collapse onto the nucleus resulting in a net charge Zn<ZZ_n < Z. Here, instead of relativistic physics, the collapse is caused by the nonlinear dielectric response. Electrons collapse into the charged spherical donor cluster with radius RR when its total charge number ZZ exceeds the critical value ZcR/aZ_c \simeq R/a, where aa is the lattice constant. The net charge eZneZ_n grows with ZZ until ZZ exceeds Z(R/a)9/7Z^* \simeq (R/a)^{9/7}. After this point, the charge number of the compact core ZnZ_n remains Z\simeq Z^*, with the rest ZZ^* electrons forming a sparse Thomas-Fermi electron atmosphere around it. We extend our results to the case of long cylindrical clusters as well.

Keywords

Cite

@article{arxiv.1508.03561,
  title  = {Electron gas induced in SrTiO$_3$},
  author = {Han Fu and K. V. Reich and B. I. Shklovskii},
  journal= {arXiv preprint arXiv:1508.03561},
  year   = {2016}
}

Comments

mini-review dedicated to the 85th birthday of Prof. L. V. Keldysh

R2 v1 2026-06-22T10:33:57.189Z