English

Efficient charge modulation in ultrathin LaAlO$_3$-SrTiO$_3$ field-effect transistors

Mesoscale and Nanoscale Physics 2019-09-30 v1 Materials Science Applied Physics

Abstract

At the LaAlO3_3-SrTiO3_3 interface, electronic phase transitions can be triggered by modulation of the charge carrier density, making this system an excellent prospect for the realization of versatile electronic devices. Here, we report repeatable transistor operation in locally gated LaAlO3_3-SrTiO3_3 field-effect devices of which the LaAlO3_3 dielectric is only four unit cells thin, the critical thickness for conduction at this interface. This extremely thin dielectric allows a very efficient charge modulation of 3.2×1013{\sim}3.2\times10^{13} cm2^{-2} within a gate-voltage window of ±1\pm1 V, as extracted from capacitance-voltage measurements. These also reveal a large stray capacitance between gate and source, presenting a complication for nanoscale device operation. Despite the small LaAlO3_3 thickness, we observe a negligible gate leakage current, which we ascribe to the extension of the conducting states into the SrTiO3_3 substrate.

Keywords

Cite

@article{arxiv.1909.12586,
  title  = {Efficient charge modulation in ultrathin LaAlO$_3$-SrTiO$_3$ field-effect transistors},
  author = {A. E. M. Smink and B. Prabowo and B. Stadhouder and N. Gauquelin and J. Schmitz and H. Hilgenkamp and W. G. van der Wiel},
  journal= {arXiv preprint arXiv:1909.12586},
  year   = {2019}
}

Comments

5 pages, 4 figures. The following article has been submitted to Applied Physics Letters