English

Low percolation density and charge noise with holes in germanium

Mesoscale and Nanoscale Physics 2021-12-14 v1 Quantum Physics

Abstract

We engineer planar Ge/SiGe heterostructures for low disorder and quiet hole quantum dot operation by positioning the strained Ge channel 55~nm below the semiconductor/dielectric interface. In heterostructure field effect transistors, we measure a percolation density for two-dimensional hole transport of 2.1×1010 cm22.1\times10^{10}~\text{cm}^{-2}, indicative of a very low disorder potential landscape experienced by holes in the buried Ge channel. These Ge heterostructures support quiet operation of hole quantum dots and we measure charge noise levels that are below the detection limit SE=0.2 μeV/Hz\sqrt{S_\text{E}}=0.2~\mu \text{eV}/\sqrt{\text{Hz}} at 1 Hz. These results establish planar Ge as a promising platform for scaled two-dimensional spin qubit arrays.

Keywords

Cite

@article{arxiv.2007.06328,
  title  = {Low percolation density and charge noise with holes in germanium},
  author = {M. Lodari and N. W. Hendrickx and W. I. L. Lawrie and T. -K. Hsiao and L. M. K. Vandersypen and A. Sammak and M. Veldhorst and G. Scappucci},
  journal= {arXiv preprint arXiv:2007.06328},
  year   = {2021}
}