English

Non Volatile MoS$_{2}$ Field Effect Transistors Directly Gated By Single Crystalline Epitaxial Ferroelectric

Applied Physics 2017-08-15 v2 Mesoscale and Nanoscale Physics Materials Science

Abstract

We demonstrate non-volatile, n-type, back-gated, MoS2_{2} transistors, placed directly on an epitaxial grown, single crystalline, PbZr0.2_{0.2}Ti0.8_{0.8}O3_{3} (PZT) ferroelectric. The transistors show decent ON current (19 μA/μ{\mu}A/{\mu}m), high on-off ratio (107^{7}), and a subthreshold swing of (SS ~ 92 mV/dec) with a 100 nm thick PZT layer as the back gate oxide. Importantly, the ferroelectric polarization can directly control the channel charge, showing a clear anti-clockwise hysteresis. We have selfconsistently confirmed the switching of the ferroelectric and corresponding change in channel current from a direct time-dependent measurement. Our results demonstrate that it is possible to obtain transistor operation directly on polar surfaces and therefore it should be possible to integrate 2D electronics with single crystalline functional oxides.

Keywords

Cite

@article{arxiv.1705.03746,
  title  = {Non Volatile MoS$_{2}$ Field Effect Transistors Directly Gated By Single Crystalline Epitaxial Ferroelectric},
  author = {Zhongyuan Lu and Claudy Serrao and Asif Islam Khan and Long You and Justin C. Wong and Yu Ye and Hanyu Zhu and Xiang Zhang and Sayeef Salahuddin},
  journal= {arXiv preprint arXiv:1705.03746},
  year   = {2017}
}